SULFORAPHANE

Sulforaphane

  1. Anticarcinogenic activities of Sulforaphane and structurally related synthetic norbornyl isothiocyanates.
  2. Multi-targeted prevention of cancer by Sulforaphane
  3. Molecular basis for chemoprevention by Sulforaphane: a comprehensive review
  4. Identification of Nrf2-regulated genes induced by the chemopreventive agent Sulforaphane by oligonucleotide microarray
  5. A novel mechanism of chemoprotection by Sulforaphane: inhibition of histone deacetylase
  6. Sulforaphane treatment of autism spectrum disorder (ASD)
  7. Nuclear factor κB is a molecular target for Sulforaphane-mediated anti-inflammatory mechanisms
  8. Sulforaphane as a promising molecule for fighting cancer
  9. Chemoprotection by Sulforaphane: keep one eye beyond Keap1
  10. Protective effect of Sulforaphane against oxidative stress: recent advances
  11. Molecular targets of dietary phenethyl isothiocyanate and Sulforaphane for cancer chemoprevention
  12. Sulforaphane, a dietary component of broccoli/broccoli sprouts, inhibits breast cancer stem cells
  13. Antimetastatic activity of Sulforaphane
  14. Potent induction of phase 2 enzymes in human prostate cells by Sulforaphane
  15. Sulforaphane inhibits histone deacetylase in vivo and suppresses tumorigenesis in Apcmin mice
  16. Sulforaphane reduces infarct volume following focal cerebral ischemia in rodents
  17. Comparison of the bioactivity of two glucoraphanin hydrolysis products found in broccoli, Sulforaphane and Sulforaphane nitrile
  18. Sulforaphane, a naturally occurring isothiocyanate, induces cell cycle arrest and apoptosis in HT29 human colon cancer cells
  19. CYP2E1-mediated mechanism of anti-genotoxicity of the broccoli constituent Sulforaphane
  20. Preclinical and clinical evaluation of Sulforaphane for chemoprevention in the breast
  21. Heating decreases epithiospecifier protein activity and increases Sulforaphane formation in broccoli
  22. Keap1–nrf2 signaling: a target for cancer prevention by Sulforaphane
  23. Dietary Sulforaphane, a histone deacetylase inhibitor for cancer prevention
  24. Chemoprevention of colonic aberrant crypt foci in Fischer rats by Sulforaphane and phenethyl isothiocyanate
  25. Modification of keap1 cysteine residues by Sulforaphane
  26. Sulforaphane induces cell type–specific apoptosis in human breast cancer cell lines
  27. Sulforaphane inhibits extracellular, intracellular, and antibiotic-resistant strains of Helicobacter pylori and prevents benzo [a] pyrene-induced stomach tumors
  28. A Sulforaphane analogue that potently activates the Nrf2-dependent detoxification pathway
  29. Sulforaphane suppressed LPS-induced inflammation in mouse peritoneal macrophages through Nrf2 dependent pathway
  30. Identification of sensor cysteines in human Keap1 modified by the cancer chemopreventive agent Sulforaphane
  31. Electrophilic tuning of the chemoprotective natural product Sulforaphane
  32. Disposition of glucosinolates and Sulforaphane in humans after ingestion of steamed and fresh broccoli
  33. Sulforaphane as a potential protective phytochemical against neurodegenerative diseases
  34. Sulforaphane and its metabolite mediate growth arrest and apoptosis in human prostate cancer cells
  35. Thermal degradation of Sulforaphane in aqueous solution
  36. Sulforaphane causes epigenetic repression of hTERT expression in human breast cancer cell lines
  37. Oral Sulforaphane increases Phase II antioxidant enzymes in the human upper airway
  38. Sulforaphane and its glutathione conjugate but not Sulforaphane nitrile induce UDP-glucuronosyl transferase (UGT1A1) and glutathione transferase (GSTA1) in …
  39. Sulforaphane targets pancreatic tumour-initiating cells by NF-κB-induced antiapoptotic signalling
  40. Discovery and development of Sulforaphane as a cancer chemopreventive phytochemical1
  41. Sulforaphane-induced cell death in human prostate cancer cells is initiated by reactive oxygen species
  42. Sulforaphane improves cognitive function administered following traumatic brain injury
  43. Sulforaphane causes autophagy to inhibit release of cytochrome C and apoptosis in human prostate cancer cells
  44. Sulforaphane retards the growth of human PC-3 xenografts and inhibits HDAC activity in human subjects
  45. Sulforaphane inhibits histone deacetylase activity in BPH-1, LnCaP and PC-3 prostate epithelial cells
  46. Cancer chemopreventive potential of sulforamate, a novel analogue of Sulforaphane that induces phase 2 drug-metabolizing enzymes
  47. Synergistic activity of sorafenib and Sulforaphane abolishes pancreatic cancer stem cell characteristics
  48. Sulforaphane: a naturally occurring mammary carcinoma mitotic inhibitor, which disrupts tubulin polymerization
  49. Glutathione S-transferase M1 polymorphism and metabolism of Sulforaphane from standard and high-glucosinolate broccoli
  50. Protective effect of Sulforaphane against dopaminergic cell death
  51. Sulforaphane mobilizes cellular defenses that protect skin against damage by UV radiation
  52. Preparative HPLC Method for the Purification of Sulforaphane and Sulforaphane Nitrile from Brassica oleracea
  53. Sulforaphane protects against cisplatin-induced nephrotoxicity
  54. Gas chromatography/mass spectrometry method for the determination of Sulforaphane and Sulforaphane nitrile in broccoli
  55. Growth inhibition, cell-cycle arrest and apoptosis in human T-cell leukemia by the isothiocyanate Sulforaphane
  56. Sulforaphane enhances aquaporin‐4 expression and decreases cerebral edema following traumatic brain injury
  57. Induction of phase 2 genes by Sulforaphane protects retinal pigment epithelial cells against photooxidative damage
  58. Sulforaphane prevents mouse skin tumorigenesis during the stage of promotion
  59. Determination of Sulforaphane in broccoli and cabbage by high-performance liquid chromatography
  60. Sulforaphane suppresses LPS-induced inflammation in primary rat microglia
  61. In vivo pharmacokinetics and regulation of gene expression profiles by isothiocyanate Sulforaphane in the rat
  62. Sulforaphane inhibits human MCF-7 mammary cancer cell mitotic progression and tubulin polymerization
  63. Inhibition of angiogenesis and endothelial cell functions are novel Sulforaphane-mediated mechanisms in chemoprevention
  64. Inhibition of cytochromes P-450 and induction of glutathione S-transferases by Sulforaphane in primary human and rat hepatocytes
  65. Sulforaphane-induced G2/M phase cell cycle arrest involves checkpoint kinase 2-mediated phosphorylation of cell division cycle 25C
  66. High glucosinolate broccoli: a delivery system for Sulforaphane
  67. Absorption/metabolism of Sulforaphane and quercetin, and regulation of phase II enzymes, in human jejunum in vivo
  68. Autophagy inhibition enhances Sulforaphane-induced apoptosis in human breast cancer cells
  69. Dietary Sulforaphane-rich broccoli sprouts reduce colonization and attenuate gastritis in Helicobacter pylori–infected mice and humans
  70. Sulforaphane increases drug-mediated cytotoxicity toward cancer stem-like cells of pancreas and prostate
  71. The dietary isothiocyanate Sulforaphane is an antagonist of the human steroid and xenobiotic nuclear receptor
  72. Sulforaphane induces caspase-mediated apoptosis in cultured PC-3 human prostate cancer cells and retards growth of PC-3 xenografts in vivo
  73. Sulforaphane: translational research from laboratory bench to clinic
  74. Nuclear factor E2-related factor 2-dependent antioxidant response element activation by tert-butylhydroquinone and Sulforaphane occurring preferentially in …
  75. Transcriptome analysis of human colon Caco-2 cells exposed to Sulforaphane
  76. Targeting cell cycle machinery as a molecular mechanism of Sulforaphane in prostate cancer prevention
  77. Sulforaphane destabilizes the androgen receptor in prostate cancer cells by inactivating histone deacetylase 6
  78. Inhibition of 7, 12-dimethylbenz (a) anthracene-induced skin tumorigenesis in C57BL/6 mice by Sulforaphane is mediated by nuclear factor E2–related factor 2
  79. Biotransformation of the naturally occurring isothiocyanate Sulforaphane in the rat: identification of phase I metabolites and glutathione conjugates
  80. Synergistic effect of combination of phenethyl isothiocyanate and Sulforaphane or curcumin and Sulforaphane in the inhibition of inflammation
  81. Protection against UV-light-induced skin carcinogenesis in SKH-1 high-risk mice by Sulforaphane-containing broccoli sprout extracts
  82. Modulation of phase II enzymes by Sulforaphane: implications for its cardioprotective potential
  83. Sulforaphane protects brains against hypoxic–ischemic injury through induction of Nrf2-dependent phase 2 enzyme
  84. Sulforaphane as a promising molecule for fighting cancer
  85. Sulforaphane enhances Nrf2 expression in prostate cancer TRAMP C1 cells through epigenetic regulation
  86. Sulforaphane induces thioredoxin through the antioxidant-responsive element and attenuates retinal light damage in mice
  87. Mechanism of Sulforaphane-induced cell cycle arrest and apoptosis in human colon cancer cells
  88. Sulforaphane suppresses angiogenesis and disrupts endothelial mitotic progression and microtubule polymerization
  89. Epithiospecifier Protein from Broccoli (Brassica oleracea L. ssp. italica) Inhibits Formation of the Anticancer Agent Sulforaphane
  90. Antiproliferative activity of Sulforaphane in Akt-overexpressing ovarian cancer cells
  91. Sulforaphane suppresses oligomerization of TLR4 in a thiol-dependent manner
  92. Modulation of histone deacetylase activity by dietary isothiocyanates and allyl sulfides: studies with Sulforaphane and garlic organosulfur compounds
  93. Induction of the phase 2 response in mouse and human skin by Sulforaphane-containing broccoli sprout extracts
  94. Sulforaphane protects ischemic injury of hearts through antioxidant pathway and mitochondrial KATP channels
  95. Cancer chemoprevention of intestinal polyposis in ApcMin/+ mice by Sulforaphane, a natural product derived from cruciferous vegetable
  96. Promoter de-methylation of cyclin D2 by Sulforaphane in prostate cancer cells
  97. Histone deacetylases as targets for dietary cancer preventive agents: lessons learned with butyrate, diallyl disulfide, and Sulforaphane
  98. Metabolism and tissue distribution of Sulforaphane in Nrf2 knockout and wild-type mice
  99. Sulforaphane protects kidneys against ischemia-reperfusion injury through induction of the Nrf2-dependent phase 2 enzyme
  100. Sulforaphane inhibits angiogenesis through activation of FOXO transcription factors
  101. Effects of glutathione on antioxidant response element-mediated gene expression and apoptosis elicited by Sulforaphane
  102. Prevention by Sulforaphane of diabetic cardiomyopathy is associated with up-regulation of Nrf2 expression and transcription activation
  103. Formation of glucoraphanin by chemoselective oxidation of natural glucoerucin: a chemoenzymatic route to Sulforaphane
  104. Cultivation conditions and selenium fertilization alter the phenolic profile, glucosinolate, and Sulforaphane content of broccoli
  105. Gene expression profiles induced by cancer chemopreventive isothiocyanate Sulforaphane in the liver of C57BL/6J mice and C57BL/6J/Nrf2 (−/−) mice
  106. Regulation of the Keap1/Nrf2 system by chemopreventive Sulforaphane: implications of posttranslational modifications
  107. Bioavailability and kinetics of Sulforaphane in humans after consumption of cooked versus raw broccoli
  108. Bax and Bak are required for apoptosis induction by Sulforaphane, a cruciferous vegetable–derived cancer chemopreventive agent
  109. Sulforaphane protects against cytokine-and streptozotocin-induced β-cell damage by suppressing the NF-κB pathway
  110. Amelioration of Alzheimer’s disease by neuroprotective effect of Sulforaphane in animal model
  111. Sulforaphane and quercetin modulate PhIP–DNA adduct formation in human HepG2 cells and hepatocytes
  112. Phenethyl isothiocyanate and Sulforaphane and their N-acetylcysteine conjugates inhibit malignant progression of lung adenomas induced by tobacco carcinogens in …
  113. Sulforaphane inhibits prostate carcinogenesis and pulmonary metastasis in TRAMP mice in association with increased cytotoxicity of natural killer cells
  114. Dietary agents as histone deacetylase inhibitors: Sulforaphane and structurally related isothiocyanates
  115. Sulforaphane protects liver injury induced by intestinal ischemia reperfusion through Nrf2-ARE pathway
  116. … protection of human retinal pigment epithelial cells, keratinocytes, and mouse leukemia cells against oxidative damage: the indirect antioxidant effects of Sulforaphane
  117. Sulforaphane protects astrocytes against oxidative stress and delayed death caused by oxygen and glucose deprivation
  118. Impact of Nrf2 on UVB‐induced skin inflammation/photoprotection and photoprotective effect of Sulforaphane
  119. Induction of phase II detoxification enzymes in rats by plant-derived isothiocyanates: comparison of allyl isothiocyanate with Sulforaphane and related compounds
  120. Suppression of NF-κB and NF-κB-regulated gene expression by Sulforaphane and PEITC through IκBα, IKK pathway in human prostate cancer PC-3 cells
  121. Neuroprotective effect of Sulforaphane in 6-hydroxydopamine-lesioned mouse model of Parkinson’s disease
  122. Design and synthesis of bifunctional isothiocyanate analogs of Sulforaphane: correlation between structure and potency as inducers of anticarcinogenic detoxication …
  123. Asymmetric synthesis of chiral sulfinate esters and sulfoxides. Synthesis of Sulforaphane
  124. Prevention of diabetic nephropathy by Sulforaphane: possible role of Nrf2 upregulation and activation
  125. Inhibition of autophagy potentiates Sulforaphane-induced apoptosis in human colon cancer cells
  126. Efficacy ofSulforaphane in eradicating Helicobacter pylori in human gastric xenografts implanted in nude mice
  127. Delay of photoreceptor degeneration in tubby mouse by Sulforaphane
  128. Sulforaphane regulates self-renewal of pancreatic cancer stem cells through the modulation of Sonic hedgehog–GLI pathway
  129. Evaporative light-scattering analysis of Sulforaphane in broccoli samples: Quality of broccoli products regarding Sulforaphane contents
  130. Chemoprevention of familial adenomatous polyposis by natural dietary compounds Sulforaphane and dibenzoylmethane alone and in combination in ApcMin/+ …
  131. Sulforaphane synergizes with quercetin to inhibit self-renewal capacity of pancreatic cancer stem cells
  132. Sulforaphane activates heat shock response and enhances proteasome activity through up-regulation of Hsp27
  133. Thioredoxin reductase in human hepatoma cells is transcriptionally regulated by Sulforaphane and other electrophiles via an antioxidant response element
  134. Bioavailability of Sulforaphane from two broccoli sprout beverages: results of a short-term, cross-over clinical trial in Qidong, China
  135. Effect of Sulforaphane on metallothionein expression and induction of apoptosis in human hepatoma HepG2 cells
  136. Sulforaphane enhances the therapeutic potential of TRAIL in prostate cancer orthotopic model through regulation of apoptosis, metastasis, and angiogenesis
  137. Induction of medulloblastoma cell apoptosis by Sulforaphane, a dietary anticarcinogen from Brassica vegetables
  138. Separation by solid phase extraction and quantification by reverse phase HPLC of Sulforaphane in broccoli
  139. Inhibition of human cytochrome P450 enzymes by 1, 2-dithiole-3-thione, oltipraz and its derivatives, and Sulforaphane
  140. Transcriptomic and proteomic profiling of KEAP1 disrupted and Sulforaphane-treated human breast epithelial cells reveals common expression profiles
  141. Cooking method significantly effects glucosinolate content and Sulforaphane production in broccoli florets
  142. Sulforaphane inhibits mitochondrial permeability transition and oxidative stress
  143. Mechanism of action of Sulforaphane: inhibition of p38 mitogen-activated protein kinase isoforms contributing to the induction of antioxidant response element …
  144. The role of protein binding in induction of apoptosis by phenethyl isothiocyanate and Sulforaphane in human non–small lung cancer cells
  145. Synergy between Sulforaphane and selenium in the induction of thioredoxin reductase 1 requires both transcriptional and translational modulation
  146. Sulforaphane-stimulated phase II enzyme induction inhibits cytokine production by airway epithelial cells stimulated with diesel extract
  147. Protective effects of benzyl isothiocyanate and Sulforaphane but not resveratrol against initiation of pancreatic carcinogenesis in hamsters
  148. Sulforaphane, erucin, and iberin up-regulate thioredoxin reductase 1 expression in human MCF-7 cells
  149. Reprogramming of keratin biosynthesis by Sulforaphane restores skin integrity in epidermolysis bullosa simplex
  150. Sulforaphane, a natural constituent of broccoli, prevents cell death and inflammation in nephropathy
  151. Sulforaphane induces cell cycle arrest and apoptosis in acute lymphoblastic leukemia cells
  152. Nrf2 and NF-κB modulation by Sulforaphane counteracts multiple manifestations of diabetic neuropathy in rats and high glucose-induced changes
  153. Development of Sulforaphane-encapsulated microspheres for cancer epigenetic therapy
  154. Sulforaphane attenuates obesity by inhibiting adipogenesis and activating the AMPK pathway in obese mice
  155. Signaling pathways and intracellular targets of Sulforaphane mediating cell cycle arrest and apoptosis
  156. HPLC screening of anti-cancer Sulforaphane from important European Brassica species
  157. Differential effects of Sulforaphane on histone deacetylases, cell cycle arrest and apoptosis in normal prostate cells versus hyperplastic and cancerous prostate cells
  158. Sulforaphane inhibits mitotic clonal expansion during adipogenesis through cell cycle arrest
  159. Sulforaphane, an activator of Nrf2, suppresses cellular accumulation of arsenic and its cytotoxicity in primary mouse hepatocytes
  160. Neuroprotective effects of Sulforaphane after contusive spinal cord injury
  161. Synthesis of (R)‐Sulforaphane Using [cpru(R, R)‐CHIRAPHOS)]+ as Chiral Auxiliary
  162. Immunomodulatory activity of Sulforaphane, a naturally occurring isothiocyanate from broccoli (Brassica oleracea)
  163. Sulforaphane inhibits growth of phenotypically different breast cancer cells
  164. Sulforaphane sensitizes tumor necrosis factor–related apoptosis-inducing ligand (TRAIL)–resistant hepatoma cells to TRAIL-induced apoptosis through reactive …
  165. Preparation and stability investigation of the inclusion complex of Sulforaphane with hydroxypropyl-β-cyclodextrin
  166. Interactions between Sulforaphane and apigenin in the induction of UGT1A1 and GSTA1 in CaCo-2 cells
  167. Bioavailability and inter-conversion of Sulforaphane and erucin in human subjects consuming broccoli sprouts or broccoli supplement in a cross-over study design
  168. Sulforaphane induces inhibition of human umbilical vein endothelial cells proliferation by apoptosis
  169. Combination treatment with resveratrol and Sulforaphane induces apoptosis in human U251 glioma cells
  170. HPLC method validation for measurement of Sulforaphane level in broccoli by‐products
  171. Induction of Quinone Reductase by Sulforaphane and Sulforaphane N-Acetylcysteine Conjugate in Murine Hepatoma Cells
  172. Protection against amyloid beta cytotoxicity by Sulforaphane: role of the proteasome
  173. Sulforaphane composition, cytotoxic and antioxidant activity of crucifer vegetables
  174. Inhibition of benzo [a] pyrene-and 1, 6-dinitropyrene-DNA adduct formation in human mammary epithelial cells bydibenzoylmethane and Sulforaphane
  175. Sulforaphane treatment protects skeletal muscle against damage induced by exhaustive exercise in rats
  176. Sulforaphane and erucin, natural isothiocyanates from broccoli, inhibit bacterial quorum sensing
  177. Nrf2 activation by Sulforaphane restores the age-related decrease of TH1 immunity: Role of dendritic cells
  178. Sonic hedgehog signaling inhibition provides opportunities for targeted therapy by Sulforaphane in regulating pancreatic cancer stem cell self-renewal
  179. Role of increased expression of the proteasome in the protective effects of Sulforaphane against hydrogen peroxide-mediated cytotoxicity in murine neuroblastoma …
  180. Sulforaphane suppresses TNF-α-mediated activation of NF-κB and induces apoptosis through activation of reactive oxygen species-dependent caspase-3
  181. d , l –Sulforaphane-induced cell death in human prostate cancer cells is regulated by inhibitor of apoptosis family proteins and Apaf-1
  182. Sulforaphane attenuates hepatic fibrosis via NF-E2-related factor 2-mediated inhibition of transforming growth factor-β/Smad signaling
  183. The dietary isothiocyanate Sulforaphane targets pathways of apoptosis, cell cycle arrest, and oxidative stress in human pancreatic cancer cells and inhibits tumor …
  184. Sulforaphane and prostate cancer interception
  185. Sulforaphane preconditioning of the Nrf2/HO-1 defense pathway protects the cerebral vasculature against blood–brain barrier disruption and neurological deficits in …
  186. Sulforaphane as an inducer of glutathione prevents oxidative stress‐induced cell death in a dopaminergic‐like neuroblastoma cell line
  187. Sulforaphane induces cell cycle arrest by protecting RB-E2F-1 complex in epithelial ovarian cancer cells
  188. Sulforaphane generates reactive oxygen species leading to mitochondrial perturbation for apoptosis in human leukemia U937 cells
  189. Activation of multiple molecular mechanisms for apoptosis in human malignant glioblastoma T98G and U87MG cells treated with Sulforaphane
  190. Inhibition of bladder cancer by broccoli isothiocyanates Sulforaphane and erucin: characterization, metabolism, and interconversion
  191. Protective effect of Sulforaphane pretreatment against cisplatin-induced liver and mitochondrial oxidant damage in rats
  192. Sulforaphane and erucin increase MRP1 and MRP2 in human carcinoma cell lines
  193. The dietary histone deacetylase inhibitor Sulforaphane induces human β‐defensin‐2 in intestinal epithelial cells
  194. Minocycline and Sulforaphane inhibited lipopolysaccharide-mediated retinal microglial activation
  195. Sulforaphane induces Nrf2 and protects against CYP2E1-dependent binge alcohol-induced liver steatosis
  196. Food matrix effects on bioactivity of broccoli-derived Sulforaphane in liver and colon of F344 rats
  197. Role of PI3K/Akt and MEK/ERK signaling pathways in Sulforaphane-and erucin-induced phase II enzymes and MRP2 transcription, G2/M arrest and cell death in Caco …
  198. Sulforaphane alleviates scopolamine-induced memory impairment in mice
  199. Sulforaphane suppresses lipopolysaccharide-induced cyclooxygenase-2 (COX-2) expression through the modulation of multiple targets in COX-2 gene promoter
  200. Pharmacogenomics of cancer chemopreventive isothiocyanate compound Sulforaphane in the intestinal polyps of ApcMin/+ mice
  201. Purification of Sulforaphane from Brassica oleracea seed meal using low-pressure column chromatography
  202. Stability and encapsulation efficiency of Sulforaphane microencapsulated by spray drying
  203. Transcription factor Nrf2 mediates an adaptive response to Sulforaphane that protects fibroblasts in vitro against the cytotoxic effects of electrophiles, peroxides and …
  204. Sulforaphane protects immature hippocampal neurons against death caused by exposure to hemin or to oxygen and glucose deprivation
  205. Sulforaphane ameliorates the development of experimental autoimmune encephalomyelitis by antagonizing oxidative stress and Th17-related inflammation in mice
  206. Suppression of microtubule dynamic instability and turnover in MCF7 breast cancer cells by Sulforaphane
  207. Involvement of c-Jun N-terminal Kinase in G2/M Arrest and Caspase-Mediated Apoptosis Induced by Sulforaphane in DU145 Prostate Cancer Cells
  208. Modulation of the metabolism of airborne pollutants by glucoraphanin-rich and Sulforaphane-rich broccoli sprout beverages in Qidong, China
  209. Synergistic anti-inflammatory effects of nobiletin and Sulforaphane in lipopolysaccharide-stimulated RAW 264.7 cells
  210. Glucoraphanin hydrolysis by microbiota in the rat cecum results in Sulforaphane absorption
  211. Induction of p21 protein protects against Sulforaphane-induced mitotic arrest in LNCaP human prostate cancer cell line
  212. The impaired glutathione system and its up-regulation by Sulforaphane in vascular smooth muscle cells from spontaneously hypertensive rats
  213. Repeated intake of broccoli does not lead to higher plasma levels of Sulforaphane in human volunteers
  214. Reactive oxygen species-related induction of multidrug resistance-associated protein 2 expression in primary hepatocytes exposed to Sulforaphane
  215. Sulforaphane alleviates muscular dystrophy in mdx mice by activation of Nrf2
  216. Temporal changes in gene expression induced by Sulforaphane in human prostate cancer cells
  217. Sulforaphane induces DNA single strand breaks in cultured human cells
  218. Sulforaphane modulates cell cycle and apoptosis in transformed and non‐transformed human T lymphocytes
  219. Requirement and epigenetics reprogramming of Nrf2 in suppression of tumor promoter TPA-induced mouse skin cell transformation by Sulforaphane
  220. Induction of phase 2 antioxidant enzymes by broccoli Sulforaphane: perspectives in maintaining the antioxidant activity of vitamins A, C, and E
  221. Sulforaphane increases the efficacy of doxorubicin in mouse fibroblasts characterized by p53 mutations
  222. Effect of Sulforaphane on cell growth, G0/G1 phase cell progression and apoptosis in human bladder cancer T24 cells
  223. Sulforaphane suppresses polycomb group protein level via a proteasome-dependent mechanism in skin cancer cells
  224. Sulforaphane inhibited expression of hypoxia‐inducible factor‐1α in human tongue squamous cancer cells and prostate cancer cells
  225. Induction of hepatic thioredoxin reductase activity by Sulforaphane, both in Hepa1c1c7 cells and in male Fisher 344 rats
  226. Urease from Helicobacter pylori is inactivated by Sulforaphane and other isothiocyanates
  227. HDAC turnover, CtIP acetylation and dysregulated DNA damage signaling in colon cancer cells treated with Sulforaphane and related dietary isothiocyanates
  228. Modulation of hepatic cytochromes P450 and phase II enzymes by dietary doses of Sulforaphane in rats: Implications for its chemopreventive activity
  229. Sulforaphane enhances TRAIL-induced apoptosis through the induction of DR5 expression in human osteosarcoma cells
  230. Factors influencing glucoraphanin and Sulforaphane formation in Brassica plants: a review
  231. p53-independent G1 cell cycle arrest of human colon carcinoma cells HT-29 by Sulforaphane is associated with induction of p21CIP1 and inhibition of expression of …
  232. Sulforaphane–PLGA microspheres for the intra-articular treatment of osteoarthritis
  233. Sulforaphane-rich broccoli sprout extract attenuates nasal allergic response to diesel exhaust particles
  234. Sulforaphane and 2-oxohexyl isothiocyanate induce cell growth arrest and apoptosis in L-1210 leukemia and ME-18 melanoma cells
  235. Sulforaphane restores cellular glutathione levels and reduces chronic periodontitis neutrophil hyperactivity in vitro
  236. Isothiocyanate concentrations and interconversion of Sulforaphane to erucin in human subjects after consumption of commercial frozen broccoli compared to fresh …
  237. Sulforaphane inhibits restenosis by suppressing inflammation and the proliferation of vascular smooth muscle cells
  238. The effect of indole‐3‐carbinol and Sulforaphane on a prostate cancer cell line
  239. Quantitative measurement of Sulforaphane, iberin and their mercapturic acid pathway metabolites in human plasma and urine using liquid chromatography–tandem …
  240. Sulforaphane, quercetin and catechins complement each other in elimination of advanced pancreatic cancer by miR-let-7 induction and K-ras inhibition
  241. Protective effect of Sulforaphane on human vascular endothelial cells against lipopolysaccharide-induced inflammatory damage
  242. Sulforaphane represses matrix‐degrading proteases and protects cartilage from destruction in vitro and in vivo
  243. Targeting cancer stem cells with Sulforaphane, a dietary component from broccoli and broccoli sprouts
  244. Induction of apoptosis by isothiocyanate Sulforaphane in human cervical carcinoma HeLa and hepatocarcinoma HepG2 cells through activation of caspase-3
  245. Repeated transient Sulforaphane stimulation in astrocytes leads to prolonged Nrf2-mediated gene expression and protection from superoxide-induced damage
  246. Effects of Sulforaphane and 3, 3′-diindolylmethane on genome-wide promoter methylation in normal prostate epithelial cells and prostate cancer cells
  247. Quantitative combination effects between Sulforaphane and 3,3′-diindolylmethane on proliferation of human colon cancer cells in vitro
  248. Modulation of experimental herpes encephalitis-associated neurotoxicity through Sulforaphane treatment
  249. Metabolic effects of Sulforaphane oral treatment in streptozotocin-diabetic rats
  250. Sulforaphane attenuates gentamicin-induced nephrotoxicity: role of mitochondrial protection
  251. Attenuation of-amyloid-induced oxidative cell death by Sulforaphane via activation of NF-E2-related factor 2
  252. Stimulation of phagocytosis by Sulforaphane
  253. Modulation of rat pulmonary carcinogen-metabolising enzyme systems by the isothiocyanates erucin and Sulforaphane
  254. Sulforaphane sensitizes tumor necrosis factor-related apoptosis-inducing ligand-mediated apoptosis through downregulation of ERK and Akt in lung adenocarcinoma …
  255. Sulforaphane prevents the development of cardiomyopathy in type 2 diabetic mice probably by reversing oxidative stress-induced inhibition of LKB1/AMPK pathway
  256. Cellular responses to cancer chemopreventive agent D, L-Sulforaphane in human prostate cancer cells are initiated by mitochondrial reactive oxygen species
  257. Sulforaphane inhibits TNF-α-induced activation of p38 MAP kinase and VCAM-1 and MCP-1 expression in endothelial cells
  258. Epithelial-mesenchymal transition, a novel target of Sulforaphane via COX-2/MMP2, 9/Snail, ZEB1 and miR-200c/ZEB1 pathways in human bladder cancer cells
  259. Sulforaphane but not ascorbigen, indole‐3‐carbinole and ascorbic acid activates the transcription factor Nrf2 and induces phase‐2 and antioxidant enzymes in human …
  260. Sulforaphane induced adipolysis via hormone sensitive lipase activation, regulated by AMPK signaling pathway
  261. Sulforaphane induces autophagy through ERK activation in neuronal cells
  262. Anti-tumor activity and signaling events triggered by the isothiocyanates, Sulforaphane and phenethyl isothiocyanate, in multiple myeloma
  263. Stability of Sulforaphane for topical formulation
  264. Sulforaphane inhibits growth of a colon cancer cell line
  265. Sulforaphane halts breast cancer cell growth.
  266. Sulforaphane, a cruciferous vegetable-derived isothiocyanate, inhibits protein synthesis in human prostate cancer cells
  267. The inhibition of autophagy potentiates anti-angiogenic effects of Sulforaphane by inducing apoptosis
  268. Antithrombotic activities of Sulforaphane via inhibiting platelet aggregation and FIIa/FXa
  269. Sulforaphane inhibits 4-aminobiphenyl-induced DNA damage in bladder cells and tissues
  270. Inhibition of synovial hyperplasia, rheumatoid T cell activation, and experimental arthritis in mice by Sulforaphane, a naturally occurring isothiocyanate
  271. D, L-Sulforaphane causes transcriptional repression of androgen receptor in human prostate cancer cells
  272. Sulforaphane inhibits endothelial lipase expression through NF-κB in endothelial cells
  273. Administration of the Nrf2–ARE activators Sulforaphane and carnosic acid attenuates 4-hydroxy-2-nonenal-induced mitochondrial dysfunction ex vivo
  274. Sulforaphane can protect lens cells against oxidative stress: implications for cataract prevention
  275. Radiosensitization of head and neck cancer cells by the phytochemical agent Sulforaphane
  276. Epigallocatechin gallate and Sulforaphane combination treatment induce apoptosis in paclitaxel-resistant ovarian cancer cells through hTERT and Bcl-2 down …
  277. Potential health benefits of Sulforaphane: a review of the experimental, clinical and epidemiological evidences and underlying mechanisms
  278. Interaction of the isothiocyanate Sulforaphane with drug disposition and metabolism: pharmacological and toxicological implications
  279. Potent induction of total cellular and mitochondrial antioxidants and phase 2 enzymes by cruciferous Sulforaphane in rat aortic smooth muscle cells: cytoprotection …
  280. Sulforaphane prevents pulmonary damage in response to inhaled arsenic by activating the Nrf2-defense response
  281. Enhanced Nrf2-dependent induction of glutathione in mouse embryonic fibroblasts by isoselenocyanate analog of Sulforaphane
  282. Histone deacetylase turnover and recovery in Sulforaphane-treated colon cancer cells: competing actions of 14-3-3 and Pin1 in HDAC3/SMRT corepressor …
  283. Impact of Thermal Processing on Sulforaphane Yield from Broccoli (Brassica oleracea L. ssp. italica)
  284. … in vitro cell-transforming and DNA-damaging activities by glucoraphanin, the bioprecursor of the chemopreventive agent Sulforaphane found in broccoli
  285. Selenium and Sulforaphane modify the expression of selenoenzymes in the human endothelial cell line EAhy926 and protect cells from oxidative damage
  286. Phase II enzyme inducer, Sulforaphane, inhibits UVB‐induced AP‐1 activation in human keratinocytes by a novel mechanism
  287. Sulforaphane enhances proteasomal and autophagic activities in mice and is a potential therapeutic reagent for Huntington’s disease
  288. Sulforaphane: from chemoprevention to pancreatic cancer treatment?
  289. … -2 and selenium decreased inflammation and tumors in a mouse model of inflammation-associated carcinogenesis whereas Sulforaphane effects differed with …
  290. The indirect antioxidant Sulforaphane protects against thiopurine-mediated photooxidative stress
  291. Analysis and anti-Helicobacter activity of Sulforaphane and related compounds present in broccoli (Brassica oleracea L.) sprouts
  292. Sulforaphane prevention of diabetes-induced aortic damage was associated with the up-regulation of Nrf2 and its down-stream antioxidants
  293. Anticancer activity of a broccoli derivative, Sulforaphane, in barrett adenocarcinoma: potential use in chemoprevention and as adjuvant in chemotherapy
  294. Sulforaphane Inhibits Osteoclastogenesis by Inhibiting Nuclear Factor-κB.
  295. Preparation of (R)-Sulforaphane by biotransformation using Helminthosporium species NRRL 4671
  296. Sulforaphane-a-key-chemopreventive-ingredient-in-broccoli-implications-for-cancer-prevention/632B634A8D2C8165AC0B9959F8CD5302″ target=”_blank” rel=”noopener” data-saferedirecturl=”https://www.google.com/url?hl=en&q=https://www.cambridge.org/core/journals/british-journal-of-nutrition/article/organspecific-exposure-and-response-to-Sulforaphane-a-key-chemopreventive-ingredient-in-broccoli-implications-for-cancer-prevention/632B634A8D2C8165AC0B9959F8CD5302&source=gmail&ust=1579108247854000&usg=AFQjCNExPYrOWraYGEQgg0E_ca6UqSR-Yw”>Organ-specific exposure and response to Sulforaphane, a key chemopreventive ingredient in broccoli: implications for cancer prevention
  297. Sulforaphane protects Microcystin-LR-induced toxicity through activation of the Nrf2-mediated defensive response
  298. Sulforaphane inhibits constitutive and Interleukin-6–induced activation of Signal Transducer and Activator of Transcription 3 in prostate cancer cells
  299. Sulforaphane suppresses ultraviolet B-induced inflammation in HaCaT keratinocytes and HR-1 hairless mice
  300. Time-dependent modulation of thioredoxin reductase activity might contribute to Sulforaphane-mediated inhibition of NF-κB binding to DNA
  301. Sulforaphane induces antioxidative and antiproliferative responses by generating reactive oxygen species in human bronchial epithelial BEAS-2B cells
  302. … oxygen species and PI3K/Akt signaling play key roles in the induction of Nrf2-driven heme oxygenase-1 expression in Sulforaphane-treated human mesothelioma …
  303. Synthesis of 14C‐labelled Sulforaphane
  304. Sulforaphane protects human chondrocytes against cell death induced by various stimuli
  305. Sulforaphane induces cell cycle arrest and apoptosis in murine osteosarcoma cells in vitro and inhibits tumor growth in vivo
  306. Chemoprevention of cancerogenesis-the role of Sulforaphane
  307. Relevance of anti-inflammatory and antioxidant activities of exemestane and synergism with Sulforaphane for disease prevention
  308. The influence of Sulforaphane on vascular health and its relevance to nutritional approaches to prevent cardiovascular disease
  309. Sulforaphane absorption and excretion following ingestion of a semi-purified broccoli powder rich in glucoraphanin and broccoli sprouts in healthy men
  310. Cyclin D3 and p53 mediate Sulforaphane-induced cell cycle delay and apoptosis in non-transformed human T lymphocytes
  311. Commercially produced frozen broccoli lacks the ability to form Sulforaphane
  312. Induction of apoptosis by Sulforaphane in highly metastatic B16F-10 melanoma cells
  313. Sulforaphane prevents microcystin-LR-induced oxidative damage and apoptosis in BALB/c mice
  314. Sulforaphane and its analogues inhibit CYP1A1 and CYP1A2 activity induced by benzo[a]pyrene
  315. Regulation of estrogen receptor α expression in human breast cancer cells by Sulforaphane
  316. Sulforaphane and TRAIL induce a synergistic elimination of advanced prostate cancer stem-like cells
  317. Hydrogen sulfide mediates the anti-survival effect of Sulforaphane on human prostate cancer cells
  318. Sulforaphane protects cortical neurons against 5‐S‐cysteinyl‐dopamine‐induced toxicity through the activation of ERK1/2, Nrf‐2 and the upregulation of …
  319. Chemoprevention of pancreatic cancer using solid-lipid nanoparticulate delivery of a novel aspirin, curcumin and Sulforaphane drug combination regimen
  320. Differential modulation of keratin expression by Sulforaphane occurs via Nrf2-dependent and-independent pathways in skin epithelia
  321. Activation of several concurrent proapoptic pathways by Sulforaphane in human colon cancer cells SW620
  322. Sulforaphane has opposing effects on TNF-alpha stimulated and unstimulated synoviocytes
  323. Brain mitochondria from rats treated with Sulforaphane are resistant to redox-regulated permeability transition
  324. Sulforaphane decreases viability and telomerase activity in hepatocellular carcinoma Hep3B cells through the reactive oxygen species-dependent pathway
  325. Repeated Nrf2 stimulation using Sulforaphane protects fibroblasts from ionizing radiation
  326. DSS-induced acute colitis in C57BL/6 mice is mitigated by Sulforaphane pre-treatment
  327. Sulforaphane inhibits the Th2 immune response in ovalbumin-induced asthma
  328. Sulforaphane counteracts aggressiveness of pancreatic cancer driven by dysregulated Cx43-mediated gap junctional intercellular communication
  329. Sulforaphane-and phenethyl isothiocyanate–induced inhibition of aflatoxin B1–mediated genotoxicity in human hepatocytes: Role of GSTM1 genotype and CYP3A4 …
  330. Comparison of the effects of phenethyl isothiocyanate and Sulforaphane on gene expression in breast cancer and normal mammary epithelial cells
  331. Modulation of mitochondrial functions by the indirect antioxidant Sulforaphane: a seemingly contradictory dual role and an integrative hypothesis
  332. Inhibition of activator protein-1 by Sulforaphane involves interaction with cysteine in the cFos DNA-binding domain: implications for chemoprevention of UVB-induced …
  333. Sulforaphane down-regulates COX-2 expression by activating p38 and inhibiting NF-κB-DNA-binding activity in human bladder T24 cells
  334. Sulforaphane inhibited melanin synthesis by regulating tyrosinase gene expression in B16 mouse melanoma cells
  335. Sulforaphane attenuation of type 2 diabetes-induced aortic damage was associated with the upregulation of Nrf2 expression and function
  336. Sulforaphane inhibits pancreatic cancer through disrupting Hsp90–p50Cdc37 complex and direct interactions with amino acids residues of Hsp90
  337. Effects of metal ions on myrosinase activity and the formation of Sulforaphane in broccoli seed
  338. Effects of the Sulforaphane analog compound 30, indole-3-carbinol, D-limonene or relafen on glutathione S-transferases and glutathione peroxidase of the rat …
  339. The dietary isothiocyanate Sulforaphane modulates gene expression and alternative gene splicing in a PTEN null preclinical murine model of prostate cancer
  340. … breaks by N-nitrosodimethylamine and 2-amino-3-methylimidazo [4, 5-f] quinoline in THLE cells expressing human CYP isoenzymes and inhibition by Sulforaphane
  341. Sulforaphane-induced apoptosis involves p53 and p38 in melanoma cells
  342. Sulforaphane causes a major epigenetic repression of myostatin in porcine satellite cells
  343. Glucoraphanin, the bioprecursor of the widely extolled chemopreventive agent Sulforaphane found in broccoli, induces phase-I xenobiotic metabolizing enzymes and …
  344. Mechanisms of anticancer activity of Sulforaphane from Brassica oleracea in HEp-2 human epithelial carcinoma cell line
  345. Sulforaphane induces growth arrest and apoptosis in human ovarian cancer cells
  346. Chemopreventive agent Sulforaphane enhances radiosensitivity in human tumor cells
  347. Quantification of Sulforaphane mercapturic acid pathway conjugates in human urine by high-performance liquid chromatography and isotope-dilution tandem mass …
  348. Part of the series: from dietary antioxidants to regulators in cellular signaling and gene regulation: Sulforaphane and selenium, partners in adaptive response and …
  349. Sulforaphane induces CYP1A1 mRNA, protein, and catalytic activity levels via an AhR-dependent pathway in murine hepatoma Hepa 1c1c7 and human HepG2 cells
  350. Sulforaphane protects rodent retinas against ischemia-reperfusion injury through the activation of the Nrf2/HO-1 antioxidant pathway
  351. Sulforaphane and α-Lipoic Acid Upregulate the Expression of the π Class of Glutathione S-Transferase through c-Jun and Nrf2 Activation
  352. The molecular mechanism of action of aspirin, curcumin and Sulforaphane combinations in the chemoprevention of pancreatic cancer
  353. Chemoprevention of prostate cancer by d, l-Sulforaphane is augmented by pharmacological inhibition of autophagy
  354. Serotonin receptors, novel targets of Sulforaphane identified by proteomic analysis in Caco-2 cells
  355. Separation and purification of Sulforaphane from broccoli by solid phase extraction
  356. Synergistic effects of a combination of dietary factors Sulforaphane and (−) epigallocatechin-3-gallate in HT-29 AP-1 human colon carcinoma cells
  357. Sulforaphane induces reactive oxygen species-mediated mitotic arrest and subsequent apoptosis in human bladder cancer 5637 cells
  358. Autophagy and cell death signaling following dietary Sulforaphane act independently of each other and require oxidative stress in pancreatic cancer
  359. Sulforaphane protects against ethanol‐induced oxidative stress and apoptosis in neural crest cells by the induction of N rf2‐mediated antioxidant response
  360. Separation and purification of Sulforaphane from broccoli seeds by solid phase extraction and preparative high-performance liquid chromatography
  361. Sulforaphane Protects from T Cell–Mediated Autoimmune Disease by Inhibition of IL-23 and IL-12 in Dendritic Cells
  362. Chemopreventive functions of Sulforaphane: a potent inducer of antioxidant enzymes and apoptosis
  363. Protective effects of an extract of young radish (Raphanus sativus L) cultivated with sulfur (sulfur-radish extract) and of Sulforaphane on carbon tetrachloride-induced …
  364. Dual action of Sulforaphane in the regulation of thioredoxin reductase and thioredoxin in human HepG2 and Caco-2 cells
  365. Sulforaphane reverses glucocorticoid-induced apoptosis in osteoblastic cells through regulation of the Nrf2 pathway
  366. Effect of Sulforaphane on micronucleus induction in cultured human lymphocytes by four different mutagens
  367. Sulforaphane protects against 6-hydroxydopamine-induced cytotoxicity by increasing expression of heme oxygenase-1 in a PI3K/Akt-dependent manner
  368. Sulforaphane decreases endothelial cell apoptosis in fuchs endothelial corneal dystrophy: a novel treatment
  369. … the nuclear factor E2–related factor 2 (Nrf2)–antioxidant-response element (ARE) pathway is essential for neuroprotective effects of Sulforaphane and 6-(methylsulfinyl …
  370. Neuroprotective effects of Sulforaphane on cholinergic neurons in mice with Alzheimer’s disease-like lesions
  371. Role of Lipid Peroxidation in Cellular Responses to d,l-Sulforaphane, a Promising Cancer Chemopreventive Agent
  372. Combination of Doxorubicin and Sulforaphane for Reversing Doxorubicin‐Resistant Phenotype in Mouse Fibroblasts with p53Ser220 Mutation
  373. Sulforaphane reduces vascular inflammation in mice and prevents TNF-α-induced monocyte adhesion to primary endothelial cells through interfering with the NF-κB …
  374. Sulforaphane induces oxidative stress and death by p53-independent mechanism: implication of impaired glutathione recycling
  375. Sulforaphane Inhibits Oral Carcinoma Cell Migration and Invasion In Vitro
  376. Sulforaphane induced cell cycle arrest in the G2/M phase via the blockade of cyclin B1/CDC2 in human ovarian cancer cells
  377. Sulforaphane inhibits the engagement of LPS with TLR4/MD2 complex by preferential binding to Cys133 in MD2
  378. … -mediated apoptosis in ovarian cancer cells through potentiating G2/M arrest and p21 upregulation by combinatorial epigallocatechin gallate and Sulforaphane
  379. The potential to intensify Sulforaphane formation in cooked broccoli (Brassica oleracea var. italica) using mustard seeds (Sinapis alba)
  380. Concurrent Sulforaphane and eugenol induces differential effects on human cervical cancer cells
  381. Protective effects of the antioxidant Sulforaphane on behavioral changes and neurotoxicity in mice after the administration of methamphetamine
  382. Isothiocyanate metabolism, distribution, and interconversion in mice following consumption of thermally processed broccoli sprouts or purified Sulforaphane
  383. Photothrombosis-induced infarction of the mouse cerebral cortex is not affected by the Nrf2-activator Sulforaphane
  384. Sulforaphane-induced autophagy flux prevents prion protein-mediated neurotoxicity through AMPK pathway
  385. Sulforaphane reduction of testicular apoptotic cell death in diabetic mice is associated with the upregulation of Nrf2 expression and function
  386. Modulation of cell-mediated immune response in B16F-10 melanoma-induced metastatic tumor-bearing C57BL/6 mice by Sulforaphane
  387. Expression of MRP1 and GSTP1-1 modulate the acute cellular response to treatment with the chemopreventive isothiocyanate, Sulforaphane
  388. Sulforaphane and related mustard oils in focus of cancer prevention and therapy
  389. Anti-carcinogenic effects of Sulforaphane in association with its apoptosis-inducing and anti-inflammatory properties in human cervical cancer cells
  390. Pretreatment of human epidermal keratinocytes with D, L-Sulforaphane protects against sulfur mustard cytotoxicity
  391. Sulforaphane induces cytotoxicity and lysosome-and mitochondria-dependent cell death in colon cancer cells with deleted p53
  392. D,L‐Sulforaphane‐induced apoptosis in human breast cancer cells is regulated by the adapter protein p66Shc
  393. Effects of the antioxidant Sulforaphane on hyperlocomotion and prepulse inhibition deficits in mice after phencyclidine administration
  394. Sulforaphane induces G2–M arrest and apoptosis in high metastasis cell line of salivary gland adenoid cystic carcinoma
  395. Sulforaphane controls TPA-induced MMP-9 expression through the NF-κB signaling pathway, but not AP-1, in MCF-7 breast cancer cells
  396. Kinetics of Sulforaphane in mice after consumption of Sulforaphane‐enriched broccoli sprout preparation
  397. Comparison of the apoptosis-inducing capability of Sulforaphane analogues in human colon cancer cells
  398. Simultaneous determination of Sulforaphane and its major metabolites from biological matrices with liquid chromatography–tandem mass spectroscopy
  399. Sulforaphane potentiates the efficacy of imatinib against chronic leukemia cancer stem cells through enhanced abrogation of Wnt/β-catenin function
  400. Sulforaphane suppresses vascular adhesion molecule-1 expression in TNF-α-stimulated mouse vascular smooth muscle cells: involvement of the MAPK, NF-κB and …
  401. The phase 2 enzyme inducers ethacrynic acid, DL-Sulforaphane, and oltipraz inhibit lipopolysaccharide-induced high-mobility group box 1 secretion by RAW 264.7 …
  402. The dietary phase 2 protein inducer Sulforaphane can normalize the kidney epigenome and improve blood pressure in hypertensive rats
  403. Glucoraphanin, Sulforaphane and myrosinase activity in germinating broccoli sprouts as affected by growth temperature and plant organs
  404. Biphasic modulation of cell proliferation by Sulforaphane at physiologically relevant exposure times in a human colon cancer cell line
  405. Quantitative profiling of glucosinolates by LC–MS analysis reveals several cultivars of cabbage and kale as promising sources of Sulforaphane
  406. Quercetin and Sulforaphane in combination suppress the progression of melanoma through the down‑regulation of matrix metalloproteinase-9
  407. Modifying the processing and handling of frozen broccoli for increased Sulforaphane formation
  408. Natural Sulforaphane as a functional chemopreventive agent: including a review of isolation, purification and analysis methods
  409. Phytochemicals resveratrol and Sulforaphane as potential agents for enhancing the anti-tumor activities of conventional cancer therapies
  410. Screening of Chinese brassica species for anti-cancer Sulforaphane and erucin
  411. Sulforaphane inhibits the growth of KPL-1 human breast cancer cells in vitro and suppresses the growth and metastasis of orthotopically transplanted KPL-1 cells in …
  412. Dual roles of Sulforaphane in cancer treatment
  413. Enantiopure Sulforaphane analogues with various substituents at the sulfinyl sulfur: Asymmetric synthesis and biological activities
  414. The diet‐derived Sulforaphane inhibits matrix metalloproteinase‐9‐activated human brain microvascular endothelial cell migration and tubulogenesis
  415. Apoptosis induction in primary human colorectal cancer cell lines and retarded tumor growth in SCID mice by Sulforaphane
  416. SPBP is a Sulforaphane induced transcriptional coactivator of NRF2 regulating expression of the autophagy receptor p62/SQSTM1
  417. Optimization of a blanching step to maximize Sulforaphane synthesis in broccoli florets
  418. Sulforaphane protects SK‐N‐SH cells against antipsychotic‐induced oxidative stress
  419. Protection by Sulforaphane from type 1 diabetes-induced testicular apoptosis is associated with the up-regulation of Nrf2 expression and function
  420. Sulforaphane inhibits invasion via activating ERK1/2 signaling in human glioblastoma U87MG and U373MG cells
  421. Regulation of Nrf2-and AP-1-mediated gene expression by epigallocatechin-3-gallate and Sulforaphane in prostate of Nrf2-knockout or C57BL/6J mice and …
  422. Sulforaphane protects H9c2 cardiomyocytes from angiotensin II-induced hypertrophy
  423. A novel antithrombotic effect of Sulforaphane via activation of platelet adenylate cyclase: ex vivo and in vivo studies
  424. Involvement of KLF4 in Sulforaphane– and Iberin-Mediated Induction of p21 waf1/cip1
  425. Gene expression profile of primary prostate epithelial and stromal cells in response to Sulforaphane or iberin exposure
  426. The cruciferous nitrile crambene has bioactivity similar to Sulforaphane when administered to Fischer 344 rats but is far less potent in cell culture
  427. Cruciferous vegetable phytochemical Sulforaphane affects phase II enzyme expression and activity in rat cardiomyocytes through modulation of Akt signaling pathway
  428. Sulforaphane and phenylethyl isothiocyanate protect human skin against UVR-induced oxidative stress and apoptosis: role of Nrf2-dependent gene expression and …
  429. Sulforaphane inhibits mammary adipogenesis by targeting adipose mesenchymal stem cells
  430. Sulforaphane induction of p21Cip1 cyclin-dependent kinase inhibitor expression requires p53 and Sp1 transcription factors and is p53-dependent
  431. The natural chemopreventive phytochemical R‐Sulforaphane is a far more potent inducer of the carcinogen‐detoxifying enzyme systems in rat liver and lung than the …
  432. No de novo Sulforaphane biosynthesis in broccoli seedlings
  433. Role of 4-hydroxynonenal in chemopreventive activities of Sulforaphane
  434. Inhibition of epstein‐barr virus reactivation in nasopharyngeal carcinoma cells by dietary Sulforaphane
  435. Effects of broccoli sprout with high Sulforaphane concentration on inflammatory markers in type 2 diabetic patients: A randomized double-blind placebo-controlled …
  436. In vivo biological activity of rocket extracts (Eruca vesicaria subsp. sativa (Miller) Thell) and Sulforaphane
  437. Inactivation of tautomerase activity of macrophage migration inhibitory factor by Sulforaphane: a potential biomarker for anti-inflammatory intervention
  438. Study on the interaction of Sulforaphane with human and bovine serum albumins
  439. Sulforaphane retards the growth of UM-UC-3 xenographs, induces apoptosis, and reduces survivin in athymic mice
  440. Sulforaphane potentiates the efficacy of 17-allylamino 17-demethoxygeldanamycin against pancreatic cancer through enhanced abrogation of Hsp90 chaperone …
  441. Sulforaphane induces apoptosis in T24 human urinary bladder cancer cells through a reactive oxygen species-mediated mitochondrial pathway: the …
  442. Sulforaphane enhances protection and repair of gastric mucosa against oxidative stress in vitro, and demonstrates anti-inflammatory effects on Helicobacter …
  443. Sulforaphane synergistically enhances the cytotoxicity of arsenic trioxide in multiple myeloma cells via stress-mediated pathways
  444. Sulforaphane potentiates oxaliplatin-induced cell growth inhibition in colorectal cancer cells via induction of different modes of cell death
  445. … agent, benzyl isothiocyanate inhibits signal transducer and activator of transcription 3 phosphorylation and collaborates with Sulforaphane in the growth …
  446. Synergistic inhibitory effect of Sulforaphane and 5‐fluorouracil in high and low metastasis cell lines of salivary gland adenoid cystic carcinoma
  447. Potent induction of carcinogen defence enzymes with Sulforaphane, a putative prostate cancer chemopreventive agent
  448. SUV39H1/H3K9me3 attenuates Sulforaphane-induced apoptotic signaling in PC3 prostate cancer cells
  449. … hormone, norepinephrine, increases proliferation and IL-6 levels of human pancreatic duct epithelial cells and can be inhibited by the dietary agent, Sulforaphane
  450. Sulforaphane inhibits IL-1β-induced proliferation of rheumatoid arthritis synovial fibroblasts and the production of MMPs, COX-2, and PGE2
  451. Growth inhibition and apoptosis of neuroblastoma cells through ROS-independent MEK/ERK activation by Sulforaphane
  452. p38 MAPK plays a distinct role in Sulforaphane-induced up-regulation of ARE-dependent enzymes and down-regulation of COX-2 in human bladder cancer cells
  453. Sulforaphane pretreatment prevents systemic inflammation and renal injury in response to cardiopulmonary bypass
  454. Sulforaphane induces DNA damage and mitotic abnormalities in human osteosarcoma MG-63 cells: correlation with cell cycle arrest and apoptosis
  455. Modulation of cisplatin sensitivity in human ovarian carcinoma A2780 and SKOV3 cell lines by Sulforaphane
  456. Sulforaphane protects primary cultures of cortical neurons against injury induced by oxygen-glucose deprivation/reoxygenation via antiapoptosis
  457. Modulation of rat hepatic and pulmonary cytochromes P450 and phase II enzyme systems by erucin, an isothiocyanate structurally related to Sulforaphane
  458. Growth inhibition of a spectrum of bacterial and fungal pathogens by Sulforaphane, an isothiocyanate product found in broccoli and other cruciferous vegetables
  459. Sulforaphane accelerates acetaldehyde metabolism by inducing aldehyde dehydrogenases: relevance to ethanol intolerance
  460. Cell-cycle specificity of Sulforaphane-mediated apoptosis in Jurkat T-leukemia cells
  461. The broccoli-born isothiocyanate Sulforaphane impairs nucleotide excision repair: XPA as one potential target
  462. Synthesis and biological evaluation of Sulforaphane derivatives as potential antitumor agents
  463. Up-regulation of the CYP1 family in rat and human liver by the aliphatic isothiocyanates erucin and Sulforaphane
  464. Prolonged Sulforaphane treatment activates survival signaling in nontumorigenic NCM460 colon cells but apoptotic signaling in tumorigenic HCT116 colon cells
  465. Sulforaphane induces SLPI secretion in the nasal mucosa
  466. Down-regulation of phosphoglucomutase 3 mediates Sulforaphane-induced cell death in LNCaP prostate cancer cells
  467. Sulforaphane inhibition of monocyte adhesion via the suppression of ICAM-1 and NF-κB is dependent upon glutathione depletion in endothelial cells
  468. Sulforaphane inhibits phorbol ester-stimulated IKK-NF-κB signaling and COX-2 expression in human mammary epithelial cells by targeting NF-κB activating kinase …
  469. Optimization of Sulforaphane separation from broccoli seeds by macroporous resins
  470. Application of high-speed countercurrent chromatography for the isolation of Sulforaphane from broccoli seed meal
  471. Kinetic studies of the thermal degradation of Sulforaphane and its hydroxypropyl-β-cyclodextrin inclusion complex
  472. Anti-inflammatory and anti-superbacterial properties of Sulforaphane from shepherd’s purse
  473. Oltipraz, 3H-1, 2-dithiole-3-thione, and Sulforaphane induce overlapping and protective antioxidant responses in murine microglial cells
  474. Sulforaphane induces cell-cycle arrest and apoptosis in cultured human lung adenocarcinoma LTEP-A2 cells and retards growth of LTEP-A2 xenografts in vivo
  475. Demonstration by redox fluorometry that Sulforaphane protects retinal pigment epithelial cells against oxidative stress
  476. Sulforaphane induces DNA double strand breaks predominantly repaired by homologous recombination pathway in human cancer cells
  477. Augmentation of natural killer cell and antibody-dependent cellular cytotoxicity in BALB/c mice by Sulforaphane, a naturally occurring isothiocyanate from broccoli …
  478. Novel targets of Sulforaphane in primary cardiomyocytes identified by proteomic analysis
  479. Sulforaphane inhibits PDGF-induced proliferation of rat aortic vascular smooth muscle cell by up-regulation of p53 leading to G1/S cell cycle arrest
  480. LC-MS/MS quantification of Sulforaphane and indole-3-carbinol metabolites in human plasma and urine after dietary intake of selenium-fortified broccoli
  481. Sulforaphane is superior to glucoraphanin in modulating carcinogen-metabolising enzymes in Hep G2 cells
  482. Sulforaphane inhibits TNF-α-induced adhesion molecule expression through the Rho A/ROCK/NF-κB signaling pathway
  483. Induction of G2/M arrest and apoptosis by Sulforaphane in human osteosarcoma U2-OS cells
  484. Carbon Nanotube as a Deliver for Sulforaphane in Broccoli Vegetable in Point of Nuclear Magnetic Resonance and Natural Bond Orbital Specifications
  485. Contents of Sulforaphane and total isothiocyanates, antimutagenic activity, and inhibition of clastogenicity in pulp
  486. Inhibition of mutagenicity of food-derived heterocyclic amines by Sulforaphane—a constituent of broccoli
  487. Effectiveness of Sulforaphane as a radiosensitizer for murine osteosarcoma cells
  488. Molecular mechanisms underlying cochlear degeneration in the tubby mouse and the therapeutic effect of Sulforaphane
  489. Effect of Sulforaphane on growth inhibition in human brain malignant glioma GBM 8401 cells by means of mitochondrial-and MEK/ERK-mediated apoptosis pathway
  490. Sulforaphane attenuates matrix metalloproteinase-9 expression following spinal cord injury in mice
  491. Dose-dependent effects of R-Sulforaphane isothiocyanate on the biology of human mesenchymal stem cells, at dietary amounts, it promotes cell proliferation and …
  492. Microwave-assisted extraction of Sulforaphane from white cabbages: Effects of extraction condition, solvent and sample pretreatment
  493. Sulforaphane inhibits de novo synthesis of IL-8 and MCP-1 in human epithelial cells generated by cigarette smoke extract
  494. Sulforaphane is not an effective antagonist of the human pregnane X-receptor in vivo
  495. Combination of carbonic anhydrase inhibitor, acetazolamide, and Sulforaphane, reduces the viability and growth of bronchial carcinoid cell lines
  496. Sulforaphane inhibits advanced glycation end product–induced pericyte damage by reducing expression of receptor for advanced glycation end products
  497. Role of Sulforaphane in the anti-initiating mechanism of lung carcinogenesis in vivo by modulating the metabolic activation and detoxification of benzo (a) pyrene
  498. Effects of phytochemicals Sulforaphane on uridine diphosphate-glucuronosyltransferase expression as well as cell-cycle arrest and apoptosis in human colon …
  499. Broccoli juice treated by high pressure: chemoprotective effects of Sulforaphane and indole-3-carbinol
  500. A new ultra-rapid UHPLC/MS/MS method for assessing glucoraphanin and Sulforaphane bioavailability in human urine
  501. Sulforaphane induces apoptosis in human hepatic cancer cells through inhibition of 6-phosphofructo-2-kinase/fructose-2, 6-biphosphatase4, mediated by hypoxia …
  502. Sulforaphane homologues: Enantiodivergent synthesis of both enantiomers, activation of the Nrf2 transcription factor and selective cytotoxic activity
  503. Sulforaphane suppresses TARC/CCL17 and MDC/CCL22 expression through heme oxygenase-1 and NF-κB in human keratinocytes
  504. A facile and efficient synthesis of 14C‐labelled Sulforaphane
  505. Notch activation is dispensable for D, L-Sulforaphane-mediated inhibition of human prostate cancer cell migration
  506. Protective effect of Sulforaphane on indomethacin‐induced cytotoxicity via heme oxygenase‐1 expression in human intestinal Int 407 cells
  507. Induction of differentiation in human promyelocytic cells by the isothiocyanate Sulforaphane
  508. New method for the synthesis of Sulforaphane and related isothiocyanates
  509. Protective effect of combination of Sulforaphane and riluzole on glutamate-mediated excitotoxicity
  510. Protective effect of Sulforaphane against cisplatin-induced mitochondrial alterations and impairment in the activity of NAD (P) H: quinone oxidoreductase 1 and γ …
  511. Sulforaphane mitigates genotoxicity induced by radiation and anticancer drugs in human lymphocytes
  512. Sulforaphane inhibits prostaglandin E2 synthesis by suppressing microsomal prostaglandin E synthase 1
  513. Pharmacokinetics and pharmacodynamics of phase II drug metabolizing/antioxidant enzymes gene response by anticancer agent Sulforaphane in rat lymphocytes
  514. Induction of uridine 5′-diphosphate-glucuronosyltransferase gene expression by Sulforaphane and its mechanism: experimental study in human colon cancel cells
  515. Chinese Cabbage Extracts and Sulforaphane Can Protect H2O2-Induced Inhibition of Gap Junctional Intercellular Communication through the Inactivation of ERK1/2 …
  516. Sulforaphane Inhib its Growth of Human Breast Cancer Cells and Augments the Therapeutic Index of the Chemotherapeutic Drug, Gemcitabine
  517. Effect of Sulforaphane on glutathione‐adduct formation and on glutathione_S_transferase‐dependent detoxification of acrylamide in Caco‐2 cells
  518. Suppression of LPS‐induced transcription and cytokine secretion by the dietary isothiocyanate Sulforaphane
  519. Divergent effects of Sulforaphane on basal and glucose-stimulated insulin secretion in β-cells: role of reactive oxygen species and induction of endogenous …
  520. A mutated p53 status did not prevent the induction of apoptosis by Sulforaphane, a promising anti-cancer drug
  521. The natural chemopreventive agent Sulforaphane inhibits STAT5 activity
  522. Inhibition of 6-hydroxydopamine-induced endoplasmic reticulum stress by Sulforaphane through the activation of Nrf2 nuclear translocation
  523. Comparison of Sulforaphane and antioxidant contents according to different parts and maturity of broccoli.
  524. Sulforaphane stimulates activation of proapoptotic protein bax leading to apoptosis of endothelial progenitor cells
  525. Sulforaphane enhances the activity of the Nrf2–ARE pathway and attenuates inflammation in OxyHb-induced rat vascular smooth muscle cells
  526. Sulforaphane prevents human platelet aggregation through inhibiting the phosphatidylinositol 3-kinase/Akt pathway
  527. Sulforaphane-production-in-lepidium-draba.pdf” target=”_blank” rel=”noopener” data-saferedirecturl=”https://www.google.com/url?hl=en&q=https://www.abacademies.org/articles/elicitors-induced-Sulforaphane-production-in-lepidium-draba.pdf&source=gmail&ust=1579108247859000&usg=AFQjCNGGjETQrUus6pmFnQkEMPFsGPmniw”>Elicitors induced Sulforaphane production in Lepidium draba
  528. The aliphatic isothiocyanates erucin and Sulforaphane do not effectively up‐regulate NAD (P) H: quinone oxidoreductase (NQO1) in human liver compared with rat
  529. Sulforaphane reduces the alterations induced by quinolinic acid: modulation of glutathione levels
  530. Interactions between drugs and Sulforaphane modulate the drug metabolism enzymatic system
  531. Reduced formation of depurinating estrogen–DNA adducts by Sulforaphane or KEAP1 disruption in human mammary epithelial MCF-10A cells
  532. Differential effects of phenethyl isothiocyanate and D, L-Sulforaphane on TLR3 signaling
  533. Study on degradation kinetics of Sulforaphane in broccoli extract
  534. Sulforaphane increases the survival rate in rats with fulminant hepatic failure induced by D-galactosamine and lipopolysaccharide
  535. Sulforaphane blocks hypoxia-mediated resistance to TRAIL-induced tumor cell death
  536. Effect of broccoli (Brassica oleracea) and its phytochemical Sulforaphane in balanced diets on the detoxification enzymes levels of tilapia (Oreochromis niloticus) …
  537. Efficacy of Sulforaphane is mediated by p38 MAP kinase and caspase-7 activations in ER-positive and COX-2-expressed human breast cancer cells
  538. Sulforaphane induces glutathione S‐transferase isozymes which detoxify aflatoxin B1‐8,9‐epoxide in AML 12 cells
  539. A facile and green synthesis of Sulforaphane
  540. Sulforaphane-Mediated Reduction of Aflatoxin B1-N7-Guanine in Rat Liver DNA: Impacts of Strain and Sex
  541. Differential response of human healthy lymphoblastoid and CCRF-SB leukemia cells to Sulforaphane and its tow analogues: 2-oxohexyl isothiocyanate and …
  542. Amplification of Sulforaphane content in red cabbage by pressure and temperature treatments
  543. Sulforaphane inhibits the proliferation of the BIU87 bladder cancer cell line via IGFBP-3 elevation
  544. Transcriptome analysis reveals a dynamic and differential transcriptional response to Sulforaphane in normal and prostate cancer cells and suggests a role for Sp1 in …
  545. Protective role of Sulforaphane against oxidative stress mediated mitochondrial dysfunction induced by benzo (a) pyrene in female Swiss albino mice
  546. Sulforaphane decreases kidney injury after transplantation in rats: role of mitochondrial damage.
  547. Evaluation of protective effects of Sulforaphane on DNA damage caused by exposure to low levels of pesticide mixture using comet assay
  548. Sulforaphane induces apoptosis in rhabdomyosarcoma and restores TRAIL-sensitivity in the aggressive alveolar subtype leading to tumor elimination in mice
  549. Sulforaphane-induced transcription of thioredoxin reductase in lens: possible significance against cataract formation
  550. Sulforaphane enhances caspase-dependent apoptosis through inhibition of cyclooxygenase-2 expression in human oral squamous carcinoma cells and nude mouse …
  551. Optimized formation, extraction, and determination of Sulforaphane in broccoli by liquid chromatography with diode array detection
  552. Sulforaphane attenuates homocysteine-induced endoplasmic reticulum stress through Nrf-2-driven enzymes in immortalized human hepatocytes
  553. Enhancement of Sulforaphane content in cabbage outer leaves using hybrid drying technique and stepwise change of drying temperature
  554. Differential modulation of dibenzo [def, p] chrysene transplacental carcinogenesis: maternal diets rich in indole-3-carbinol versus Sulforaphane
  555. Sulforaphane POTENTIAL AND VITAMIN C CONCENTRATION IN DEVELOPING HEADS AND LEAVES OF BROCCOLI (BRASSICA OLERACEA VAR. ITALICA …
  556. Chemopreventive role of Sulforaphane by upholding the GSH redox cycle in pre-and post-initiation phases of experimental lung carcinogenesis
  557. New enantiomeric fluorine-containing derivatives of Sulforaphane: Synthesis, absolute configurations and biological activity
  558. Transcriptomic responses of cancerous and noncancerous human colon cells to Sulforaphane and selenium
  559. Cancer chemoprevention with Sulforaphane, a dietary isothiocyanate
  560. Chronic Sulforaphane oral treatment accentuates blood glucose impairment and may affect GLUT3 expression in the cerebral cortex and hypothalamus of rats fed with …
  561. Synergy between Sulforaphane and selenium in the up-regulation of thioredoxin reductase and protection against hydrogen peroxide-induced cell death in human …
  562. Sulforaphane increases cyclin-dependent kinase inhibitor, p21 protein in human oral carcinoma cells and nude mouse animal model to induce G2/M cell cycle arrest
  563. Sulforaphane protects small intestinal mucosa from aspirin/NSAID-induced injury by enhancing host defense systems against oxidative stress and by inhibiting …
  564. Antileukemic activity of Sulforaphane in primary blasts from patients affected by myelo-and lympho-proliferative disorders and in hypoxic conditions
  565. Antioxidant Sulforaphane and sensitizer trinitrobenzene sulfonate induce carboxylesterase-1 through a novel element transactivated by nuclear factor-E2 related factor …
  566. Prolonged Sulforaphane treatment does not enhance tumorigenesis in oncogenic K-ras and xenograft mouse models of lung cancer
  567. Effect of temperature, pH and light on the stability of Sulforaphane solution
  568. Changes in SeMSC, glucosinolates and Sulforaphane levels, and in proteome profile in broccoli (Brassica oleracea var. Italica) fertilized with sodium selenate
  569. Sulforaphane enhances the ability of human retinal pigment epithelial cell against oxidative stress, and its effect on gene expression profile evaluated by …
  570. Sulforaphane induces phase II detoxication enzymes in mouse skin and prevents mutagenesis induced by a mustard gas analog
  571. Off-target effects of Sulforaphane include the derepression of long terminal repeats through histone acetylation events
  572. Comparison of the antioxidant effects of diallyl sulfide, capsaicin, gingerol and Sulforaphane in H2O2-stressed HepG2 cells
  573. The Isolation and Determination of Sulforaphane from Broccoli Tissues by Reverse Phase‐High Performance Liquid Chromatography
  574. Modulation of arachidonic acid metabolism in the rat kidney by Sulforaphane: implications for regulation of blood pressure
  575. Effects of caffeic acid phenethyl ester, ellagic acid, Sulforaphane and curcumin on diazinon induced damage to the lungs, liver and kidneys in an acute toxicity …
  576. … class glutathione transferases (GSTs) in chemoprevention: GSTA1 and A4 overexpressing human leukemia (HL60) cells resist Sulforaphane and curcumin induced …
  577. Sulforaphane-as-a-potential-agent-for-disease-pr” target=”_blank” rel=”noopener” data-saferedirecturl=”https://www.google.com/url?hl=en&q=https://ukm.pure.elsevier.com/en/publications/an-evaluation-of-Sulforaphane-as-a-potential-agent-for-disease-pr&source=gmail&ust=1579108247860000&usg=AFQjCNF71xz4n8Yon3YJgbA42om2eiD_5g”>An evaluation of Sulforaphane as a potential agent for disease prevention
  578. Effects of co‑treatment with Sulforaphane and autophagy modulators on uridine 5′-diphospho‑glucuronosyltransferase 1A isoforms and cytochrome P450 3A4 …
  579. Theoretical investigation of Sulforaphane molecule
  580. Sulforaphane potentiates RNA damage induced by different xenobiotics
  581. Comparative inhibitory activities of Sulforaphane and phenethyl isothiocyanate against leukemia resistant CEM/C2 cancer cells
  582. Development and validation of an LC-MS-MS method for the simultaneous determination of Sulforaphane and its metabolites in rat plasma and its application in …
  583. Stereological survey of the ameliorative effects of Sulforaphane and quercetin on renal tissue in unilateral ureteral obstruction in rats
  584. Sulforaphane and flavonoid contents in chosen broccoli cultivars
  585. Does molecular docking reveal alternative chemopreventive mechanism of activation of oxidoreductase by Sulforaphane isothiocyanates?
  586. Independent effects of the broccoli-derived compound Sulforaphane on Ca2+ influx and apoptosis in Madin-Darby canine renal tubular cells
  587. Functional relevance of d,l-Sulforaphane-mediated induction of vimentin and plasminogen activator inhibitor-1 in human prostate cancer cells
  588. Inhibitory effect of Sulforaphane against benzo (a) pyrene induced lung cancer by modulation of biochemical signatures in female Swiss albino mice
  589. Isothiocyanate Sulforaphane inhibits protooncogenic ornithine decarboxylase activity in colorectal cancer cells via induction of the TGF‐β/Smad signaling pathway
  590. The naturally occurring aliphatic isothiocyanates Sulforaphane and erucin are weak agonists but potent non-competitive antagonists of the aryl hydrocarbon receptor
  591. Sulforaphane_by.7.aspx” target=”_blank” rel=”noopener” data-saferedirecturl=”https://www.google.com/url?hl=en&q=https://journals.lww.com/bloodcoagulation/fulltext/2013/07000/Antiplatelet_activity_of_L_Sulforaphane_by.7.aspx&source=gmail&ust=1579108247861000&usg=AFQjCNEjRLPsT3yu6h9R6h070GH_Xqgwqw”>Antiplatelet activity of L-Sulforaphane by regulation of platelet activation factors, glycoprotein IIb/IIIa and thromboxane A2
  592. Novel gram-scale production of enantiopure R-Sulforaphane from Tuscan black kale seeds
  593. Effect of tBHQ and Sulforaphane on Nrf2-ARE signaling pathway of Caco2 cells
  594. Sulforaphane (1-isothiocyanato-4-(methylsulfinyl)-butane) content in cruciferous vegetables
  595. Sulforaphane-induced apoptosis was regulated by p53 and Caspase-3 dependent pathway in human chondrosarcoma, HTB-94
  596. Simultaneous determination of glucoraphanin and Sulforaphane in Brassica oleracea seeds by high-performance liquid chromatography with evaporative light …
  597. Sulforaphane-induces-the-phase-2-response-by-s” target=”_blank” rel=”noopener” data-saferedirecturl=”https://www.google.com/url?hl=en&q=https://discovery.dundee.ac.uk/en/publications/the-isothiocyanate-Sulforaphane-induces-the-phase-2-response-by-s&source=gmail&ust=1579108247861000&usg=AFQjCNH1meAbH7O78koJo21zWrfszpxSVg”>The isothiocyanate Sulforaphane induces the phase 2 response by signaling of the Keap1-Nrf2-ARE pathway: implications for dietary protection against cancer
  598. A protective role of Sulforaphane on alveolar epithelial cells exposed to cigarette smoke extract
  599. Development of a Novel Functional Soup Rich in Bioactive Sulforaphane Using Broccoli (Brassica oleracea L. ssp. italica) Florets and Byproducts
  600. Comparison of Sulforaphane content in seeds of {sl Cruciferous} plant
  601. RETRACTED: Application of Sulforaphane: Histopathological Study of Intraportal Transplanted Pancreatic Islets Into Livers of Diabetic Rats
  602. Study on Enzymatic Conditions of Sulforaphane from Broccoli Seed
  603. Sulforaphane modulates the expression of Cyp6a2 and Cyp6g1 in larvae of the ST and HB crosses of the Drosophila wing spot test and is genotoxic in the ST cross
  604. Induction of antioxidant genes by Sulforaphane and klotho in human aortic smooth muscle cells
  605. Determining Sulforaphane contents in edible parts of nine cruciferous vegetables.
  606. Characterization of the threshold for NAD (P) H: quinone oxidoreductase activity in intact Sulforaphane-treated pulmonary arterial endothelial cells
  607. Application of Sulforaphane–does it lead to improvement of islet graft survival after warm and/or cold ischemia.
  608. Overexpression of regucalcin suppresses apoptotic cell death in the cloned rat hepatoma H4-II-E cells induced by a naturally occurring isothiocyanate Sulforaphane
  609. Variation of Sulforaphane levels in broccoli (Brassica oleracea var. italica) during flower development and the role of gene AOP2
  610. Studies on Purification and Antitumor in Vitro Experiment of Sulforaphane Enzymolyzed from Glucosinolate in Broccoli Seed [J]
  611. Role of PI3K/Akt and MEK/ERK signaling pathways in Sulforaphane-and erucin-induced phase II enzymes and MRP2 transcription, G2/M arrest and cell death …
  612. The effectiveness of the isothiocyanate Sulforaphane in chemoprotection
  613. The effect of nitrogen and sulphur fertilization on the yield and content of Sulforaphane and nitrates in cauliflower
  614. Development and verification of Sulforaphane extraction method in cabbage (Brassica oleracea L. var. capitata) and broccoli (Brassica oleracea L. var. italica …
  615. Inhibition of cell cycle and induction of apoptosis by Sulforaphane in cell lines carrying various inherited BRCA1 mutations
  616. Sub-chronic Sulforaphane exposure in CD-1 pregnant mice enhances maternal NADPH quinone oxidoreductase 1 (NQO1) activity and mRNA expression of NQO1 …
  617. Sulforaphane enhances MHC Class II-restricted presentation of exogenous antigens
  618. Sulforaphane and total phenolics contents and antioxidant activity of radish according to genotype and cultivation location with different altitudes
  619. Characterization and antioxidant activity of bovine serum albumin and Sulforaphane complex in different solvent systems
  620. Synthesis of 1, 1′, 2, 2′, 3, 3′, 4, 4′‐octadeutero‐Sulforaphane
  621. Interactions of Sulforaphane and dimethyl sulfoxide with methyl methanesulfonate, urethane, 4-nitroquinoline-1-oxide and hydrogen peroxide in the Drosophila …
  622. Sulforaphanemediated-nrf2-induction-in-cultured-human-keratinocytes/5F91A932FA76D74D0AE46A1B23695510″ target=”_blank” rel=”noopener” data-saferedirecturl=”https://www.google.com/url?hl=en&q=https://www.cambridge.org/core/journals/british-journal-of-nutrition/article/cyanidin-does-not-affect-Sulforaphanemediated-nrf2-induction-in-cultured-human-keratinocytes/5F91A932FA76D74D0AE46A1B23695510&source=gmail&ust=1579108247861000&usg=AFQjCNFsmDxkncPke7vcOkZn8Ib-7O2g2Q”>Cyanidin does not affect Sulforaphane-mediated Nrf2 induction in cultured human keratinocytes
  623. Sulforaphane inhibits ultraviolet B-induced matrix metalloproteinase expression in human dermal fibroblasts
  624. Effect of (R) L-Sulforaphane on 5-aminolevulinic acid-mediated photodynamic therapy
  625. Effects of Sulforaphane on Toll-like receptor 4/myeloid differentiation factor 88 pathway of monocyte-derived macrophages from patients with chronic obstructive …
  626. Sulforaphane inhibits endothelial protein C receptor shedding in vitro and in vivo
  627. Sulforaphane inhibits HDAC activity in prostate cancer cells, retards growth of PC3 xenografts, and inhibits HDAC activity in vivo
  628. Sulforaphane interaction with amyloid beta 1‐40 peptide studied by electrospray ionization mass spectrometry
  629. A rapid validated HPLC method for determination of Sulforaphane and glucoraphanin in broccoli and red cabbage prepared by various cooking techniques
  630. Effects of ultrasonication on the analysis of Sulforaphane content in vegetables
  631. Withdrawn:“Sulforaphane Restores Oxidative Stress Induced by Di-n-butylphthalate in Testicular Leydig Cells With Low Basal Reactive Oxygen Species Levels”[URL …
  632. Studies on statistical optimization of Sulforaphane production from broccoli seed
  633. Cell cycle effects of L-Sulforaphane, a major antioxidant from cruciferous vegetables: The role of the anaphase promoting complex.
  634. Effect of Sulforaphane on the growth of human bladder cancer cell and its mechanism
  635. The anti-inflammatory effects of Sulforaphane are not mediated by the Nrf2 pathway
  636. Sulforaphane treatment in men with recurrent prostate cancer.
  637. Sulforaphane_from_Brassica_oleracea_var_rubra/links/5892d99f92851cda256a3a37/Studies-on-antioxidant-and-antimicrobial-activities-of-purified-Sulforaphane-from-Brassica-oleracea-var-rubra.pdf” target=”_blank” rel=”noopener” data-saferedirecturl=”https://www.google.com/url?hl=en&q=https://www.researchgate.net/profile/Renuka_Devi_J/publication/284662308_Studies_on_antioxidant_and_antimicrobial_activities_of_purified_Sulforaphane_from_Brassica_oleracea_var_rubra/links/5892d99f92851cda256a3a37/Studies-on-antioxidant-and-antimicrobial-activities-of-purified-Sulforaphane-from-Brassica-oleracea-var-rubra.pdf&source=gmail&ust=1579108247862000&usg=AFQjCNGuCiee0cJNcb26WTKQWFnWfleGzA”>Studies on antioxidant and antimicrobial activities of purified Sulforaphane from Brassica oleraceae var. rubra
  638. The New Advances in Sulforaphane [J]
  639. Sulforaphane inhibits smooth muscle cell proliferation and migration by reducing MMP-9 activity via the Ras and RhoA/ROCK pathways
  640. Research advances in content variation of Sulforaphane in Brassicaceous vegetables
  641. TGFbeta dependent polyamine depletion is associated with cell growth inhibitory effects of isothiocyanate Sulforaphane in colon cancer cells
  642. Determination of Sulforaphane by high performance liquid chromatography and genetic analysis of DH population in broccoli florets.
  643. Herb honey containing Sulforaphane-aglycone with potential use in cancer prophylaxis
  644. Nrf2-dependent immunomodulation by Sulforaphane improves bacterial phagocytosis in COPD macrophages and inhibits bacterial burden and inflammation in …
  645. Synthesis of Sulforaphane during the formation of plantlets from broccoli (Brassica oleracea L. var italica) in vitro
  646. Reactive oxygen species involved in Sulforaphane-induced STAT3 inactivation and apoptosis in DU145 prostate cancer cells
  647. Sulforaphane (SFN) regulates dedifferentiation and cyclooxygenase-2 (COX-2) expression via MAPkinase pathway in rabbit articular chondrocytes
  648. Sulforaphane inhibition of TPA-mediated PDCD4 downregulation contributes to suppression of c-Jun and induction of p21-dependent Nrf2 expression
  649. First double-blind placebo-controlled, multicenter, randomized trial of stabilized natural Sulforaphane in men with rising PSA following radical prostatectomy.
  650. From the table to the bedside: can food-derived Sulforaphane be used as a novel agent to treat leukemia?
  651. A comparison of the bioavailability of Sulforaphane from broccoli sprouts and a semi-purified broccoli powder rich in glucoraphanin in healthy human males
  652. Anti-proliferative effects of the isothiocyanate Sulforaphane on the growth of human cervical carcinoma HeLa cells
  653. Sulforaphane protects neurons against injury induced by oxygen-glucose deprivation/reoxygenation [J]
  654. Characterization and expression analysis of myrosinase for Sulforaphane synthesis in broccoli
  655. Sulforaphane prevents colitis-associated cancer by inducing phase II enzymes activity of liver detoxification
  656. Improvement salt tolerance of broccoli and cauliflower by adding magnetic iron and seamino and the reflection of this on yield and Sulforaphane content under Sinai …
  657. The inhibitory effect of broccoli in cruciferous vegetables derived-Sulforaphane on vascular tension
  658. Induction of phase II enzymes glutathione-s-transferase and NADPH: quinone oxydoreductase 1 with novel Sulforaphane derivatives in human keratinocytes …
  659. Effects of Sulforaphane on three tumor cell lines and one normal cell line.
  660. Sulforaphane regulates differentiation via PI-3K/AKT pathway in human chondrosarcoma cell line, HTB-94 cells
  661. Sulforaphane Suppresses LPS‐Induced or TPA‐Induced Downregulation of PDCD4 in RAW 264.7 Cells
  662. Effects of autophagy modulator on autophagy and uridine 5′-diphospho-glucuronosyltransferase 1A1 induced by Sulforaphane
  663. A novel pH-sensitive microsphere composed of CM-chitosan and alginate for Sulforaphane delivery
  664. Sulforaphane_content_and_peroxidase_activity_in_Lepidium_draba_seedlings/links/53f2051c0cf2bc0c40e6fc36/Effects-of-iron-and-cupper-ions-on-Sulforaphane-content-and-peroxidase-activity-in-Lepidium-draba-seedlings.pdf” target=”_blank” rel=”noopener” data-saferedirecturl=”https://www.google.com/url?hl=en&q=https://www.researchgate.net/profile/Maryam_Aminizadeh/publication/264810497_Effects_of_iron_and_cupper_ions_on_Sulforaphane_content_and_peroxidase_activity_in_Lepidium_draba_seedlings/links/53f2051c0cf2bc0c40e6fc36/Effects-of-iron-and-cupper-ions-on-Sulforaphane-content-and-peroxidase-activity-in-Lepidium-draba-seedlings.pdf&source=gmail&ust=1579108247862000&usg=AFQjCNHtnwPIfH-KxudNG8SkadVQPx6YfQ”>Effects of iron and cupper ions on Sulforaphane content and peroxidase activity in Lepidium draba seedlings
  665. Sulforaphane inhibits proliferation by causing cell cycle arrest at the G2/M phase in rabbit articular chondrocytes
  666. Effects of different LED light qualities on callus induction, proliferation and Sulforaphane content of Raphanus sativus L.
  667. Effects of Sulforaphane on G_2/M Phase Arrest in HepG-2 Cells and the Expression of Cdk1 and CyclinB1 [J]
  668. Effects of Sulforaphane, grapefruit seed extracts, and reuterin on virulence gene expression using hilA and invF fusion strains of Salmonella Typhimurium
  669. Sulforaphane inhibits CYP1A1 activity and promotes genotoxicity induced by 2, 3, 7, 8-tetrachlorodibenzo-p-dioxin in vitro
  670. Sulforaphane attenuates inflammation by decreasing Toll-like receptor 2 and 4 expression and activity in human monocytes and peripheral blood mononuclear cells …
  671. Apoptosis in human colon carcinoma Caco-2 cells induced by Sulforaphane
  672. Sulforaphane (SFN) and Sodium Nitroprusside (SNP) Regulate Proliferation and Apoptosis Through C-Jun N-terminal Kinase (JNKinase) Pathway in Human Breast …
  673. Sulforaphane_EXTRACTED_FROM_BROCCOLI/links/5634665208aeb786b701423b.pdf” target=”_blank” rel=”noopener” data-saferedirecturl=”https://www.google.com/url?hl=en&q=https://www.researchgate.net/profile/Shrenik_Shah4/publication/283338438_BROAD_RANGE_ACTIVITY_OF_Sulforaphane_EXTRACTED_FROM_BROCCOLI/links/5634665208aeb786b701423b.pdf&source=gmail&ust=1579108247862000&usg=AFQjCNEG0Jzoq0yoP8_uTXqCJ0HyNp4Lxw”>Broad range activity of Sulforaphane extracted from broccoli
  674. Mechanisms of chemopreventive activity of Sulforaphane
  675. The New Advances of Preparation and Analysis in Sulforaphane
  676. Anti-proliferative targets of Sulforaphane in ovarian cancer
  677. Increased Sulforaphane concentration in brussels sprout following high hydrostatic pressure treatment
  678. Abstract# 5112: Induction of apoptosis by Sulforaphane analoges in human colon cancer cells
  679. Antibacterial mechanism of Sulforaphane on Escherichia coli
  680. Inspecting pesticide residue of some vegetables confused by iberin and Sulforaphane [J]
  681. Investigating the potential anti-diabetic effect of Sulforaphane
  682. Dietary supplementation of Sulforaphane improves glucose tolerance and insulin sensitivity in middle-aged obese mice (809.4)
  683. Effect of prenatal antioxidant Sulforaphane on fetal transcriptomics in mice
  684. Antifibrosic effects of Sulforaphane in human lung fibroblasts from idiopathic pulmonary fibrosis
  685. Abstract B53: Identifying functional polymorphisms that alter Sulforaphane‐induced gene expression via the NRF2 pathway
  686. Effects Sulforaphane on IMR-90 Phase II Enzyme Induction and Cell Senescence
  687. Analysis of glucoraphanin and Sulforaphane contents in different organs of broccoli.
  688. Induction of reactive oxygen species-dependent mitotic arrest and apoptosis by Sulforaphane in human bladder cancer 5637 cells
  689. Sulforaphane protects against cell-mediated LDL oxidation and potentiates the effects of alpha tocopherol
  690. Role of induction of the 26S proteasome in protective effects of Sulforaphane against hydrogen peroxide-mediated cytotoxicity in murine neuroblastoma cells
  691. The anti-tumor effects of acetazolamide and Sulforaphane on bronchial carcinoids: Preclinical modeling and mechanism
  692. Effect of Sulforaphane on proliferation, cell cycle and apoptosis of breast cancer cell lines and its mechanism
  693. Voltammetric and electrochemical quartz crystal microbalance studies of Sulforaphane and its Zn (II) complexes
  694. Effects of the isothiocyanates Sulforaphane and erucin on breast cancer and normal human mammary epithelial cells.
  695. Sulforaphane enhances protection and repair of gastric mucosa against oxidative stress via nrf2-dependent mechanisms
  696. Comparison of bioactivity between Sulforaphane and neoglucobrassicin hydrolysis product in murine and human cell lines (372.5)
  697. Induction of Cytoprotective Mechanisms by the Chemopreventive Isothiocyanate Sulforaphane in Rat and Murine Hepatoma Cell Lines
  698. Sulforaphane as New Therapeutic Agent for Targeting of Cancer Stem Cells with Focus to Prostate and Pancreatic Cancer
  699. Adaptive cytoprotection and cancer chemoprotection by Sulforaphane against various stresses: role of nrf2-keap1 dependent and independent pathways (1052.1)
  700. Combined inhibitory effect of Sulforaphane and 5-flourouracil on cell proliferation in human ACC-M cells.
  701. Differential effects of Sulforaphane on histone deacetylases, cell cycle arrest and apoptosis in normal and prostate cancer cells
  702. Dietary broccoli and pure Sulforaphane upregulated detoxification enzymes and thioredoxin reductase, but decreased glutathione peroxidase when fed to F344 rats.
  703. Intestinal disposition of Sulforaphane in rat ileum and its concentration dependent effects on gene expression of metabolizing enzymes and transporters.
  704. Antiproliferative effects and metabolism of Sulforaphane and glucoraphanin from broccoli sprouts in human colon and liver cancer cells.
  705. The Glucosinolate and Sulforaphane Contents of Land Race Radish and Wild Race Radish Extracts and Their Inhibititory Effects on Cancer Cell Lines
  706. Expression profile of CYP19 in human breast cancer cell lines treated with indole-3-carbinol, 3, 3′-diindolylmethane, and Sulforaphane.
  707. Abstract# 2101: Sulforaphane inhibits prostate carcinogenesis and pulmonary metastasis in TRAMP mice in association with reduced cell proliferation and increased …
  708. Increase of bioactive Sulforaphane and its related compounds with sulfur compounds in broccoli (Brassica oleracea var. italica) sprouts during cultivation.
  709. Pilot evaluation of Sulforaphane in melanoma patients with multiple atypical nevi: Tissue STAT1 and STAT3 as risk markers.
  710. Inhibition of nitric oxide production corresponds to the Sulforaphane content in Korean sheperd’s purse (Capsella bursa-pastoris) and related species in BV-2 cell
  711. Isothiocyanates and their metabolites in the plasma of mice fed broccoli sprouts isothiocyanate extract, broccoli sprouts, Sulforaphane or erucin: A potential role in …
  712. Sulforaphane at Physiological Concentrations Inhibits TNF-α-Induced Monocyte Adhesion to Human Vascular Endothelial Cells and Improves Vascular Inflammation …
  713. Sulforaphane.pdf” target=”_blank” rel=”noopener” data-saferedirecturl=”https://www.google.com/url?hl=en&q=http://www.mokamelshenasi.ir/files/molecules/Parts%2520of%2520PDR/Sulforaphane.pdf&source=gmail&ust=1579108247863000&usg=AFQjCNGKSBcsmaEiTaLZEMqw75oYBhdEQw”>Sulforaphane may have anticarcinogenic activity.
  714. Sulforaphane protects PC12 cells against oxidative toxicity
  715. Sulforaphane_and_erucin_natural_isothiocyanates_from_broccoli_inhibit_bacterial_quorum_sensing/links/5613ca8008aec622440fbee3/Sulforaphane-and-erucin-natural-isothiocyanates-from-broccoli-inhibit-bacterial-quorum-sensing.pdf” target=”_blank” rel=”noopener” data-saferedirecturl=”https://www.google.com/url?hl=en&q=https://www.researchgate.net/profile/Pnina_Krief/publication/233992203_Sulforaphane_and_erucin_natural_isothiocyanates_from_broccoli_inhibit_bacterial_quorum_sensing/links/5613ca8008aec622440fbee3/Sulforaphane-and-erucin-natural-isothiocyanates-from-broccoli-inhibit-bacterial-quorum-sensing.pdf&source=gmail&ust=1579108247863000&usg=AFQjCNHtw6oG3kffz8VAF1x1XIQ7ieX_Ew”>Synthetic procedures: Sulforaphane and erucin
  716. Antihypertensive effects of Sulforaphane
  717. Histone deacetylase inhibition by metabolites of Sulforaphane
  718. Enhancing Nrf2 By Sulforaphane Improves Glucocorticosteroid Responses In COPD
  719. Sulforaphane eradicates pancreatic cancer stem cells by NF-κB
  720. Efficacy of Sulforaphane in Eradicating
  721. The chemopreventive potential of Sulforaphane and erucin
  722. Targeting colon cancer stem cells using Sulforaphane
  723. The New Advances in Sulforaphane
  724. Protected Retinal Function by Sulforaphane on Retinal Ischemic Injury
  725. Sulforaphane Decreases Ezh2 Expression in PC3 Prostate Cancer Cells
  726. Research Progress in Regulatory Mechanism of Sulforaphane
  727. Sulforaphane bioavailability and bioactivity in humans
  728. Sulforaphane Post-treatment Had No Protective Effects in Paraquat-intoxicated Rats
  729. Sulforaphane-against-ionizing/411/00003949″ target=”_blank” rel=”noopener” data-saferedirecturl=”https://www.google.com/url?hl=en&q=https://insights.ovid.com/free-radical-biology-medicine/frbm/2012/09/001/protective-effect-Sulforaphane-against-ionizing/411/00003949&source=gmail&ust=1579108247863000&usg=AFQjCNFN2-mP7lPFFMO6H8wDARrRygy25g”>Protective effect of Sulforaphane against ionizing radiation
  730. The effect of Sulforaphane in human melanoma cells
  731. Bioactive Sulforaphane from in vitro Propagated Brassica Seedlings
  732. The biological activity of Sulforaphane and iberin
  733. Sulforaphane induces apoptosis of endothelial progenitor cells
  734. Protective effect of Sulforaphane in experimental kidney transplantation model
  735. ISOLATION AND DETERMINATION OF Sulforaphane FROM LEPIDIUM DRABA
  736. Hepatoprotection by curcumin and Sulforaphane against tBHP-induced oxidative damage
  737. Dietary Histone Deacetylase Inhibitor Sulforaphane Inhibits Adipogenesis in 3T3-L1 Pre-adipocytes
  738. Sulforaphane facilitates mitotic cell death triggered by arsenic trioxide
  739. Analysis of glucoraphanin and Sulforaphane contents in different organs of broccoli
  740. Sulforaphane modulates DNA methylation of gene promoters
  741. Studies on chemoprotection by Sulforaphane
  742. Plasma metabolites altered by Sulforaphane in humans
  743. The Biochemistry of Alternative Medicine: Sulforaphane: Broccoli’s Chemoprotective Secret
  744. In vitro studies on antioxidant and antimicrobial activities of Sulforaphane
  745. Sulforaphane Can Protect Human Lens Cells Against Oxidative Stress
  746. Comparison of Some New High-Sulforaphane-content Broccoli Cultivars
  747. Study on determination method of Sulforaphane in broccoli by HPLC
  748. In vivo inhibition of histone deacetylase by Sulforaphane
  749. Sulforaphane Enhances Proteasome Activity through Upregulation of Hsp27
  750. Sulforaphane_Exposure/links/54ad763f0cf2213c5fe40582/Enhanced-Eryptosis-following-Sulforaphane-Exposure.pdf” target=”_blank” rel=”noopener” data-saferedirecturl=”https://www.google.com/url?hl=en&q=https://www.researchgate.net/profile/Salvatrice_Calabro/publication/270569184_Enhanced_Eryptosis_following_Sulforaphane_Exposure/links/54ad763f0cf2213c5fe40582/Enhanced-Eryptosis-following-Sulforaphane-Exposure.pdf&source=gmail&ust=1579108247864000&usg=AFQjCNHC3EdH7qgSRvN-J8S0yXNG0c-X9A”>Enhanced Eryptosis following Sulforaphane Exposure. S Calabrò, K Alzoubi 2, F Lang 2, C Faggio
  751. Synthesis of Sulforaphane and inhibition of cytochrome P450 enzymes as a basis for antigenotoxicity
  752. Sensitization of ovarian cancer to cytotoxic agents by Sulforaphane
  753. Oral Sulforaphane induces antioxidant phase II enzymes in the human airway
  754. Sulforaphane prevents palmitic acid-induced mitochondrial impairments of cardiomyocyte in vitro
  755. Optimization in the orthogonal test of extraction technology of Sulforaphane from vegetable
  756. Sulforaphane prevents acetaminophen-induced hepatic injury in mice.
  757. Differential modulation of pro-survival signal transduction pathways by Sulforaphane in ovarian cancer
  758. Sulforaphane Inhibits Redox Fluorometry Shifts in Retinal Pigment Epithelium Cells Following Oxidative Challenge
  759. Sulforaphane in the protection of cardiomyocytes from oxidative stress
  760. Study on biological half-life of Sulforaphane in vivo
  761. Metabolism of Sulforaphane in Humans: Supplements vs. Whole Foods
  762. Sulforaphane Enhances TRAIL-induced Apoptosis through the Induction
  763. Effect of Sulforaphane on neurotransmitter receptors: an insight into the regulatory networks for chemoprevention studies
  764. Chemopreventive potential of curcumin and Sulforaphane in suppression of mammary tumorigenesis
  765. Bioavailability and metabolomic targets of Sulforaphane in humans (1036.2)
  766. Abstract# 4: Sulforaphane destabilizes the androgen receptor in prostate cancer cells by inactivating HDAC6
  767. AB0971 Chondroprotective effect of Sulforaphane and PLGA-based delivery system
  768. Shoot Induction from Broccoli Explant Hypocotyls and Biosynthesis of Sulforaphane
  769. Modulation of the Expression of Multidrug Resistance Proteins by Sulforaphane and Erucin
  770. Effects of Sulforaphane preconditioning on cognitive dysfunction induced by sevoflurane anesthesia in aged rats
  771. Anti-aggregatory effects of Sulforaphane on in vitro platelet function
  772. Inhibition of autophagy potentiates the anti-angiogenic effects of Sulforaphane
  773. Inducibility of thioredoxin reductase (TR) by Sulforaphane (SF) derived from broccoli.
  774. Sulforaphane influences histone methylation in advanced prostate cancer cells (1045.15)
  775. The Dietary Isothiocyanate, Sulforaphane, Suppresses Microsomal Prostaglandin E Synthase 1 by Regulating Hypoxia-inducible Factor 1 alpha
  776. The inhibitory effect of Sulforaphane on the expression of VCAM-1 in vascular smooth muscle cells
  777. THE EFFECT OF Sulforaphane IN HUMAN MELANOMA CELLS
  778. Chronic, low-dose treatment with Sulforaphane inhibits growth of breast cells.
  779. Dietary Chemoprevention Agent Sulforaphane Inhibits Growth, Survival and Tumorigenic Activity in Human Neuroblastoma
  780. Sulforaphane exerts its biological effects by introducing DNA double strand breaks
  781. Sulforaphane induces p21 and Krüppel-like factor 4 (KLF4) in human colon Caco2 cells
  782. Suppression of pro-inflammatory signalling pathways by Sulforaphane
  783. Sulforaphane&ots=idTRR6yqI5&sig=zuf0ySAx1SwIIGv02ArlPCwD_sY” target=”_blank” rel=”noopener” data-saferedirecturl=”https://www.google.com/url?hl=en&q=https://books.google.com/books?hl%3Den%26lr%3Dlang_en%26id%3DqXEcAwAAQBAJ%26oi%3Dfnd%26pg%3DPA155%26dq%3D%2BSulforaphane%26ots%3DidTRR6yqI5%26sig%3Dzuf0ySAx1SwIIGv02ArlPCwD_sY&source=gmail&ust=1579108247865000&usg=AFQjCNEqcGB4GatWkcgyl-5Jr9AE_BU0yA”>Influence of selenium deficiency and Sulforaphane on lipid metabolism in growing rats
  784. Sulforaphane supplementation in women newly diagnosed with DCIS: A biomarker study.
  785. Extraction Technology and HPLC Determination of Sulforaphane in Draba Nemorosa L. var. Leiocarpa Lindl.
  786. Effect of Sulforaphane on RASSF1A methylation and gene expression in nasopharyngeal carcinoma cells
  787. Sulforaphane alters cerebral leukocyte-endothelial cell interactions post global ischaemia reperfusion
  788. SymbolInduction of heme oxygenas 1 by Sulforaphane of INS-1 cells
  789. Sulforaphane attenuates lung fibrosis in bleomycin-induced pulmonary fibrosis via inhibition of TGF-β/Smad signaling
  790. Viability of Bovine Corneal Endothelial Cells in Culture with Sulforaphane, VIP, or CNTF after Oxidative Stress
  791. Bone-anabolic effects of Sulforaphane, a naturally occurring isothiocyanate on bone metabolism
  792. Sulforaphane inhibits matrix metalloproteinase-9 enzymatic activity and NF-κB activation in CNE-2 cells
  793. Optimisation of the Method for the Quantitative Determination of Sulforaphane in Broccoli
  794. Effect of Sulforaphane-containing Broccoli Extract on Anti-inflammation
  795. Actin Cytoskeleton Architecture Regulates Sulforaphane-induced Differentiation in Human Chondrosarcoma, HTB-94 Cells
  796. Sulforaphane Regulation of Microsomal Prostaglandin E Synthase 1 Pathway
  797. Induction of apoptosis by L-Sulforaphane in human U937 monocyte leukemia cells through the caspase-3 activation
  798. Enhancing Nrf2 By Sulforaphane Improve Bacterial Phagocytosis By COPD Macrophages And Reduces Bacterial Exacerbations In Cigarette Smoke-Exposed Mice
  799. Bioaccumulation of carotenoids and Sulforaphane conjugates from tomato and broccoli powders with differing bioactive profiles
  800. Sulforaphane downregulates the expression of pAkt and enhances TRAIL-mediated apoptosis in human bladder cancer cells
  801. CYP2El-mediated mechanism of anti-genotoxicity of the broccoli constituent Sulforaphane
  802. Sulforaphane Decreases Endothelial Cell Apoptosis in Fuchs Endothelial Corneal Dystrophy: A Novel Treatment
  803. The application of polystyrene-based resin reversed phase chromatography in the separation of Sulforaphane
  804. Effects and Mechanisms of Sulforaphane on the Cell Cycle of Human Bladder Cancer Cell Lines
  805. Regulation of Estrogen Receptor Alpha Expression in Breast Cancer Cells by Sulforaphane
  806. Sulforaphane inhibits matrix metalloproteinase-9 enzymatic activity and ERK1/2 phosphorylation in HepG-2 cells
  807. Effects of Sulforaphane on brain Aβ deposition and oxidative stress in Alzheimer’s disease mice model
  808. Sulforaphane reactivates the expression of Nrf2 through CpGs demethylation in TRAMP C1 cells.
  809. Sulforaphane & protein expression in an inflammatory prostate model
  810. Sulforaphane improves MARCO expression, bacterial clearance and survival in post-influenza bacterial pneumonia (145.1)
  811. Effect of different drying methods on the Sulforaphane content of broccoli.
  812. Research advance of Sulforaphane in cruciferae about cancer prevention mechanism.
  813. Study on the stability of Sulforaphane crude extract from broccoli seeds.
  814. Prostate cancer prevention by Sulforaphane, a novel dietary histone deacetylase inhibitor
  815. Establishing candidate biomarkers for the pharmacodynamic action of Sulforaphane in the breast
  816. The inhibitory effects of dietary agents, benzyl isothiocyanate and Sulforaphane in pancreatic cancer cells
  817. Sulforaphane_Prevents_Oxidative.453.aspx” target=”_blank” rel=”noopener” data-saferedirecturl=”https://www.google.com/url?hl=en&q=https://journals.lww.com/ajg/Fulltext/2013/10001/Pretreatment_with_Sulforaphane_Prevents_Oxidative.453.aspx&source=gmail&ust=1579108247865000&usg=AFQjCNE3tzrlUwAMilZ7FEPEKv2iJ4PG4Q”>Pretreatment with Sulforaphane Prevents Oxidative Stress in Brains of Acute Hyperammonemic Rats: 453
  818. Inhibition Of Cigarette Smoke-Induced Chemokine Production By The NRF2 Activator Sulforaphane
  819. A new molecular mechanism for blockade of prostaglandin E2 expression by Sulforaphane
  820. Neuroprotective effect and possible mechanisms of Sulforaphane on focal cerebral ischemic-reperfusion injury in rats [J]
  821. Natural product Sulforaphane selectively inhibits breast cancer stem cells in basal and trastuzumab resistant Her2+ breast cancer.
  822. Reaction oxygen species mediated Sulforaphane induced-apoptosis in squamous cell carcinoma-9 human tongue carcinoma cells
  823. Inhibitory effects of Sulforaphane on hypoxia-inducible factor-1α in human prostate cancer cells
  824. A General Simple Method for Synthesis of the Sulforaphane derivatives
  825. Sulforaphane inhibits mammary cancer cell mitotic progression and tubulin polymerization
  826. The Isothiocyanate, Sulforaphane, Alters the Acidification of the Vacuole to Trigger Yeast Cell Death
  827. Sulforaphane Increased Chemotherapy Sensitivity of HL-60 Cell Line and Human Primary Leukemia Cells
  828. Genetic characterization of the mechanism of action of Sulforaphane in the yeast, S. cerevisiae
  829. Pretreatment with Sulforaphane could delay onset of coma and time to reach mortality in acute hyperammonemic rats: a preliminary study
  830. Role of proteasome induction in the protective effects of Sulforaphane against oxidative damage
  831. MECHANISMS OF CELL CYCLE ARREST AND APOPTOSIS INDUCTION BY Sulforaphane
  832. Effects of Sulforaphane on proliferation of human bladder cancer cells and its mechanism
  833. Effects of Sulforaphane on the expression of COX-2 and iNOS mRNA induced by LPS in vascular endothelial cells
  834. SELENIUM (SE) AND Sulforaphane (SF) INTERACT TO REDUCE OXIDATIVE DAMAGE IN HT-29 CELLS
  835. Abstract B46: The effect of Sulforaphane on protein expression in benign prostatic hyperplasia tissue
  836. Sulforaphane activates a protective Nrf2 response and reduces inflammatory markers in microglia cells
  837. Protective Effects of the Nrf2 Agonist Sulforaphane on PC12 Cells against MPP~+-induced Oxidative Damage
  838. 401: Mechanisms of Action of Sulforaphane: A Putitutive Prostate Cancer Preventive Agent
  839. Sulforaphane protects small intestinal mucosa from indomethacin-induced injury in mice via nrf2-dependent mechanisms
  840. Effects of Sulforaphane on learning memory and cholinergic system in AD model mice
  841. EFFECT OF ALUMINUM OXIDE ON Sulforaphane CONTENT IN LEPIDIUM DRABA SEEDLINGS
  842. Sulforaphane protects cortical neurons against endogenous neurotoxins in a model of Parkinson’s disease
  843. Sulforaphane reduces UVB-induced non-melanoma skin cancer through inhibition of p38/Cox2 signaling.
  844. Sulforaphane Suppresses LPS-induced COXII Expression via ATF3/NFκB p65 Complex
  845. … -Tandem Mass Spectrometry (UPLC-MS/MS) Method for the Rapid and Sensitive Determination of Sulforaphane and Sulforaphane Nitrile in Brassica …
  846. Suppression of microtubule dynamics by Sulforaphane: A novel mechanistic basis for its antiproliferative action
  847. Cancer Chemoprevention by Sulforaphane, a Bioactive Compound from Broccoli/Broccoli Sprouts
  848. NADPH quinone oxidoreductase induction by Sulforaphane inhibits synovial hyperplasia and rheumatoid T cell proliferation.(50.15)
  849. Abstract A47: Establishing candidate biomarkers for the pharmacodynamic action of Sulforaphane in the breast
  850. Simultaneous Determination of Sulforaphane and its Major Metabolites with Liquid Chromatography-Tandem Mass Spectroscopy
  851. Therapeutic Effect of Sulforaphane on Inflammation Damage of Endothelial Cells Induced by HCY [J]
  852. Investigating Sulforaphane effects on gene regulation and protein expression in HL-60 cells (842.15)
  853. Modulation of Estrogen-Depurinating DNA Adducts by Sulforaphane for Breast Cancer
  854. Sulforaphane potentiates the sensitivity of apoptosis through suppression of tnf-α-induced nf-κb activation
  855. Combination treatment with epigallocatechin-3-gallate and Sulforaphane sensitize ovarian cancer cells to cisplatin
  856. Targeting of pancreatic cancer stem cell self-renewal by Sulforaphane involves modulation of Sonic hedgehog signaling.
  857. PS 1582; DILD: Sulforaphane Attenuates TGF-ß-Induced Fibrosis and Alveolar Epithelial to Mesenchymal Transition
  858. Protective effects of Sulforaphane on the oxidative damage of kidney mitochondria complex in obese rats induced by high-fat diet
  859. W1735 Sulforaphane Stimulates Histamine-Mediated Gastric Acid Secretion and Ameliorates Monochloramine-Induced Gastric Mucosal Injury
  860. The Effects of Sulforaphane and Propolis on Anti-Inflammation and Anti-Oxidation
  861. Pharmacokinetics and Pharmacodynamics of Phase II Gene Expression in Rat Lymphocytes Following Intravenous Administration of Sulforaphane
  862. A Genome-wide Screen for Transcription Factors that Confer Resistance to Sulforaphane in the Yeast, Candida albicans
  863. Sulforaphane-derived compounds, production method thereof and the medical, food and cosmetic use of same
  864. The Role of Microbiota in Formation and Bioavailability of Sulforaphane From Glucoraphanin in F344 Rats
  865. Protective effects of Sulforaphane on cardiomyocyte injury induced by ischemia and hypoxia in neonate rat
  866. The effect of Sulforaphane on oxidative stress and biotransformation in HepaRG cells
  867. Sulforaphane inhibits redox-regulated permeability transition and provides neuroprotection following cardiac arrest
  868. Mechanism of Sulforaphane-induced growth arrest and apoptosis in SK-MEL-31 melanoma cells.
  869. Effects of Sulforaphane on bladder cancer in vitro and in an orthotopic bladder tumor animal model.
  870. Modulation of estrogen depurinating DNA adduct by Sulforaphane or KEAP1 knockdown in human breast epithelial cells.
  871. Effects of Sulforaphane on expressions of ICAM-1 and VCAM-1 mRNA induced by LPS and nuclear translocation of NF-κB in vascular endothelial cell
  872. Cancer chemoprevention of intestinal polyposis in ApcMin/+ mice by Sulforaphane, a natural product derived from cruciferous vegetable.
  873. Sulforaphane Inhibits Activation of Toll-like Receptor 4 in a Thiol-dependent Manner
  874. Induction of Thioredoxin via Antioxidant Responsive Element, and Attenuation of Retinal Light Damage in Mice by Sulforaphane
  875. Improving the redox potential of gestational diabetic endothelial cells: protective actions of Sulforaphane
  876. Sulforaphane-induced cell death in human prostate cancer cells is initiated by generation of reactive oxygen species
  877. Changes in gene expression in primary prostatic epithelial and fibroblast cells induced by Sulforaphane and iberin
  878. Modulation of Nrf2 and NF-κB Counteracts Multiple Manifestations of Experimental Diabetic Neuropathy: Potential of Sulforaphane and Melatonin
  879. Targeting Cyclooxygenase 2 and Nuclear Factor Erythoid 2-Related Factor 2 with Sulforaphane for Bladder Cancer Chemoprevention
  880. Sulforaphane represses matrix-degrading proteases and protects cartilage from destruction in vitro and in vivo
  881. Abstract# 384: Sulforaphane causes autophagy as a defense mechanism against apoptosis in human colon cancer cells
  882. Sulforaphane and trichostatin A histone deacetylase inhibitors increase vitamin D-induced CYP24 expression in intestinal cells
  883. Synergistic anti-inflammatory effects of combination of Nobiletin and Sulforaphane in lipopolysaccharide-stimulated RAW 264.7 cells
  884. Neuroprotective Effects of Sulforaphane Against a-Amyloid-Induced Cell Death and Memory Impairments
  885. Effects and mechanisms of action of Sulforaphane on the cell cycle of human gastric adenocarcinoma SGC7901 cells
  886. Optimization of extraction technique of Sulforaphane from broccoli callus via by response surface methodology (RSM)[J]
  887. Prediction of interaction of various apoptotic proteins with Sulforaphane (SFN) isolated from Brassica oleraceae using docking studies
  888. D, L-Sulforaphane-induced apoptosis in human breast cancer cells is regulated by growth factor adaptor protein p66Shc
  889. Dietary compounds EGCG and Sulforaphane differentially reactivate ER-α in African American and Caucasian breast cancer cells.
  890. Sulforaphane AND OXOMATE: INHIBITORS OF TPA INDUCED NITRIC OXIDE SYNTHASE (INOS), CYCLOOXYGENASE 2 (COX-2) AND OXIDATIVE STRESS …
  891. The bioavailability of Sulforaphane from broccoli products in men and its epigenetic activity
  892. Effect of some phosphorus sources, nitrogen and sulphur levels on yield, quality, Sulforaphane and vit. C content in broccoli.
  893. Using Carboxyfluorescein Succinimidyl Ester (CFSE) to Measure the Effects of Sulforaphane on Cell Division in a Human Leukemia Cell Line.
  894. Inhibition of PC-3 xenograft growth in nude mice by oral administration of Sulforaphane, a constituent of cruciferous vegetables
  895. Daily intake of Sulforaphane-rich broccoli sprouts prevents progression of high salt diet-induced gastric atrophy in H. pylori-infected C57/BL6 mice in vivo
  896. Cancer Chemopreventive Potential of Sulforamate, a Novel Analogue of Sulforaphane That Induces Phase 2 Drug-metabolizing Enzymes1
  897. Prolonged Sulforaphane treatment activates extracellular-regulated kinase 1/2 signaling in nontumorigenic colon cells but not colon cancer cells
  898. The effect of Sulforaphane on leukocyte-endothelial interactions and platelet activation during inflammation and thrombosis
  899. Novel naproxen, resveratrol and Sulforaphane (NRS) combinations demonstrate synergistic decrease in cell viability of human colon and pancreatic cancer cell lines
  900. Daily Intake of Sulforaphane-Rich Broccoli Sprouts Suppresses H. pylori Colonization and Attenuates H. pylori-induced Gastritis via Upregulation of Nrf2-dependent …
  901. Quantitative determination of Sulforaphane from broccoli extract tablets and its role in the protection of acute liver injury induced by ethanol. Journal of Zhejiang …
  902. Aging and Oxidative Stress-Induced Dysregulation of LEDGF Gene in Lens Epithelial Cells and Lenses Released by Sulforaphane Through Epigenetic Reprograming
  903. Augmentation of D, L-Sulforaphane-mediated prostate cancer chemoprevention by pharmacologic inhibition of autophagy using chloroquine in a transgenic mouse …
  904. Involvment of MAPK/NF-E2 Related Factor 2/Thioredoxin Cascade in Sulforaphane-Mediated Photoreceptor Protection in the Retina of Tubby Mouse
  905. Inhibition of matrix metalloproteinase activity in human fibrosarcoma HT-1080 cells by phenethyl isothiocyanate (PEITC) and Sulforaphane (SFN).
  906. Sulforaphane as a multifunctional neuroprotective molecule to prevent and slow down the progression of Alzheimer’s disease
  907. The Characterization of Sulforaphane as a Novel Antagonist to the Human Pregnane and Xenobiotic Receptor (PXR)
  908. Olanzapine-induced liver injury: direct metabolic effects, exacerbation by high-fat diet, and protection with Sulforaphane.
  909. Abstract# 22: Identification of a critical DNA-binding cysteine as a target for Sulforaphane after UVB-induced AP-1 stimulation.
  910. The natural product Sulforaphane protects epidermal tissue from individuals at increased risk for melanoma from the effects of UV radiation
  911. Effect of Sulforaphane on human small cell lung cancer NCI-H446 cells proliferation, invasion and the activity of MMP-9
  912. ANALYSIS OF THE EFFECT OF DIFFERENT CONCENTRATIONS OF FE ION ON THE BIOSYNTHESIS PATHWAY OF Sulforaphane IN LEPIDIUM DRABA …
  913. Sulforaphane suppresses 12-O-tetradecanoylphorbol-13-acetate (TPA)-induced mouse epidermal JB6 P+ cell transformation through epigenetic re-activation of Nrf2.
  914. Anti-Proliferative Effect of Sulforaphane in Human Breast Cancer Cells and V-MYC Transformed WB-F344 Rat Liver Cells
  915. AB196. Sulforaphane reduction of testicular apoptotic cell death in diabetic mice is associated with the up-regulation of Nrf2 expression and function
  916. Protection by normoxic reoxygenation and Sulforaphane against astrocyte oxidative stress and death after oxygen and glucose deprivation
  917. Sulforaphane inhibits phorbol ester-induced COX-2 expression in human breast epithelial cells: I κB kinase β and NAK as potential targets
  918. Sulforaphane, a cancer chemopreventive constituent of cruciferous vegetable, stimulates dendritic-and natural killer cell-mediated cancer cell immunity in TRAMP …
  919. Abstract B64: A novel chemoprevention strategy using nanotechnology-based delivery of combinations of piroxicam, curcumin, and Sulforaphane (PCS) on human …
  920. Sulforaphane-induced Apoptosis is Regulated by Bcl-2 and Caspase-3 in Human Leukemia U937 Cells through Modulation of the ERK and Akt Pathways
  921. GW25-e3558 Prevention of Angiotensin II-induced Cardiomyopathy by Sulforaphane-activated Nrf2 Partially via AKT/GSK-3β/Fyn Pathway
  922. Abstract LB-184: Differential effects of Sulforaphane and related isothiocyanates on HDAC turnover and the DNA damage response in colon cancer cells
  923. Sulforaphane inhibits phorbol ester-induced COX-2 expression by blocking NF-κB-activating kinase and ERK signaling in human breast epithelial cells
  924. Cancer Biology; Sulforaphane inhibits phorbol ester-induced COX-2 expression in human breast epithelial cells by blocking IkappaB kinase-beta and NAK
  925. Sulforaphane induced G2/M phase cell cycle arrest in PC-3 human prostate cancer cells is associated with phosphorylation of Chk2 and Cdc25C
  926. PS 1068; Gastroenterology (Gastrointestinal Tract): Broccoli Sprout Extract Containing Sulforaphane (BSES) Can Prevent Lipid Peroxidation in the Gastric Mucosa …
  927. Abstract A65: Activation of ERK1/2 using combination of aspirin, curcumin and Sulforaphane regimen leads to NF-κB inhibition and apoptosis in pancreatic cancer …
  928. Sulforaphane protects melanocytes and skin from individuals at increased risk for melanoma from the effects of UV radiation: Role of thioredoxin reductase 1.
  929. D, L-Sulforaphane inhibits constitutive and interleukin 6-induced activation of signal transducer and activator of transcription 3 in human prostate cancer cells
  930. … of multiple molecular mechanisms for mediation of apoptosis in human malignant glioblastoma cell lines T98G and U87MG following exposure to L-Sulforaphane
  931. Effect of tea polyphenols and Sulforaphane on the expression of protein kinase A anchoring protein 95 and cyclin E2 in lung cancer tissue
  932. Differential effects of a combination of Sulforaphane and epigallocatechin-3-gallate in HT-29 AP-1 and PC-3 AP-1 stable cell lines
  933. Histone Deacetylase Inhibitors Trichostatin A (tsa) And Sulforaphane (sfn) Modulate Vitamin D Responsive Cyp24 Gene Expression in 3t3-l1 Preadipocytes
  934. Effects of a combination of resveratrol and Sulforaphane on mutagenesis and DNA adduct formation in rat mammary tissue and a rat mammary fibroblast cell line.
  935. MP70-08 WITHDRAWN: FIRST DOUBLE-BLIND PLACEBO CONTROLLED, MULTI-CENTRE, RANDOMIZED TRIAL OF Sulforaphane IN MEN WITH RISING PSA …
  936. Abstract# 18: Cellular responses to cancer chemopreventive agent D, L-Sulforaphane in human prostate cancer cells are initiated by the mitochondria-derived reactive …
  937. Characterizing the molecular activity of isothiocyanate analogues of Sulforaphane: Will a longer carbon chain yield better protection against UVB-induced non …
  938. 173. Impact of Sulforaphane, Alone or in Combination with Paclitaxel, on Cell Growth, Genome-Wide Expression Profile, and Genomic Integrity, in Barrett’s …
  939. Abstract# 958: Sulforaphane mediates protective responses against ultraviolet A radiation in mouse embryonic fibroblasts, primary keratinocytes and dermal …
  940. Sulforaphane-induced cell death in human prostate cancer cells is associated with Bax activation, down-regulation of inhibitor of apoptosis family proteins and Apaf-1 …
  941. Synergestic induction of NRF-2 gene by curcumin and Sulforaphane and pharmacokinetics/metabolism of 13C/Dim in rats by UPLC/MS
  942. The regulation of toll-like receptor 4 expression by hypoxic stress through phosphatidylinositol 3-kinase/Akt pathway and Sulforaphane in macrophages
  943. Correction to Sulforaphane Potentiates the Efficacy of Imatinib against Chronic Leukemia Cancer Stem Cells through Enhanced Abrogation of Wnt/β-Catenin Function
  944. Sulforaphane depresses proliferation and induces cell death in glioblastoma multiforme (GBM) cells, GBM stem cell-like spheroids, and tumor xenografts through …
  945. Effects of 5-Aza-2’Deoxycitidine and Sulforaphane on Major Histocompatibility Complex (MHC) classes I and II surface expression in human acute T-cell leukemia cell …
  946. Induction of apoptosis by Sulforaphane and curcumin and expression profile of jmjd3, a key histone demethylase in breast cancer cell line MDA-MB-231
  947. Dietary Sulforaphane elicits off-target effects at loci coding for long terminal repeats in lymphocytes from healthy adults and in IMR-90 fibroblast cultures, possibly …
  948. Sulforaphane pre-treatment reduces blood-brain barrier disruption in experimental stroke by inducing heme oxygenase-1 expression in the glio-vascular complex of …
  949. Critical Involvement of Jun N-Terminal Kinase in G2/M Arrest And Caspase-Mediated Apoptosis Induced by Sulforaphane in DU145 Prostate Cancer Cells And Lack …
  950. Protective action of withania somnifera Ashwagandha Sulforaphane Broccoli sprout and cabbage and other ayurvedic products against aflatoxin induced genotoxicity …
  951. Sulforaphane_suppresses_vascular_adhesion_molecule-1_expression_in_TNF-a-stimulated_mouse_vascular_smooth_muscle_cells_Involvement_of_the_MAPK_NF-kB_and_AP-1_signaling_pathways/links/5a79008f0f7e9b41dbd4465b/Sulforaphane-suppresses-vascular-adhesion-molecule-1-expression-in-TNF-a-stimulated-mouse-vascular-smooth-muscle-cells-Involvement-of-the-MAPK-NF-kB-and-AP-1-signaling-pathways.pdf” target=”_blank” rel=”noopener” data-saferedirecturl=”https://www.google.com/url?hl=en&q=https://www.researchgate.net/profile/Dong-Kwon_Rhee/publication/51865365_Sulforaphane_suppresses_vascular_adhesion_molecule-1_expression_in_TNF-a-stimulated_mouse_vascular_smooth_muscle_cells_Involvement_of_the_MAPK_NF-kB_and_AP-1_signaling_pathways/links/5a79008f0f7e9b41dbd4465b/Sulforaphane-suppresses-vascular-adhesion-molecule-1-expression-in-TNF-a-stimulated-mouse-vascular-smooth-muscle-cells-Involvement-of-the-MAPK-NF-kB-and-AP-1-signaling-pathways.pdf&source=gmail&ust=1579108247868000&usg=AFQjCNFXXyF9sAfvJs7skYxT3aTOSsriJA”>Corrigendum to “Sulforaphane suppresses vascular adhesion molecule-1 expression in TNF-α-stimulated mouse vascular smooth muscle cells: Involvement of the …
  952. Sulforaphane protects against cardiovascular disease via Nrf2 activation
  953. Dietary Sulforaphane in cancer chemoprevention: the role of epigenetic regulation and HDAC inhibition
  954. Sulforaphane protects against acetaminophen-induced hepatotoxicity
  955. Frugal chemoprevention: targeting Nrf2 with foods rich in Sulforaphane
  956. A phase II study of Sulforaphane-rich broccoli sprout extracts in men with recurrent prostate cancer
  957. Sulforaphane inhibits multiple inflammasomes through an Nrf2‐independent mechanism
  958. Sulforaphane protects the heart from doxorubicin-induced toxicity
  959. Sulforaphane enhances progerin clearance in H utchinson–G ilford progeria fibroblasts
  960. Effect of Sulforaphane in men with biochemical recurrence after radical prostatectomy
  961. KEAP1 and done? Targeting the NRF2 pathway with Sulforaphane
  962. Sulforaphane bioavailability from glucoraphanin-rich broccoli: control by active endogenous myrosinase
  963. The antioxidant properties of organosulfur compounds (Sulforaphane)
  964. Neuroprotective effect of Sulforaphane against methylglyoxal cytotoxicity
  965. Sulforaphane and other nutrigenomic Nrf2 activators: can the clinician’s expectation be matched by the reality?
  966. Sulforaphane reduces hepatic glucose production and improves glucose control in patients with type 2 diabetes
  967. Sulforaphane attenuates muscle inflammation in dystrophin-deficient mdx mice via NF-E2-related factor 2 (Nrf2)-mediated inhibition of NF-κB signaling pathway
  968. Sulforaphane attenuation of experimental diabetic nephropathy involves GSK-3 beta/Fyn/Nrf2 signaling pathway
  969. Dietary glucosinolates Sulforaphane, phenethyl isothiocyanate, indole-3-carbinol/3, 3′-diindolylmethane: Antioxidative stress/inflammation, Nrf2, epigenetics …
  970. Sulforaphane is anticonvulsant and improves mitochondrial function
  971. Sulforaphane delivery using mPEG–PCL co-polymer nanoparticles to breast cancer cells
  972. Sulforaphane protects against rotenone-induced neurotoxicity in vivo: Involvement of the mTOR, Nrf2, and autophagy pathways
  973. Sulforaphane prevents doxorubicin-induced oxidative stress and cell death in rat H9c2 cells
  974. Cytotoxic and antitumor activity of Sulforaphane: the role of reactive oxygen species
  975. … induces glial activation, neuroinflammation and alters neurotransmitter receptors in hippocampus, impairing spatial learning: reversal by Sulforaphane
  976. Sulforaphane inhibits thyroid cancer cell growth and invasiveness through the reactive oxygen species-dependent pathway
  977. Absorption and chemopreventive targets of Sulforaphane in humans following consumption of broccoli sprouts or a myrosinase‐treated broccoli sprout extract
  978. Sulforaphane mitigates muscle fibrosis in mdx mice via Nrf2-mediated inhibition of TGF-β/Smad signaling
  979. Metallothionein plays a prominent role in the prevention of diabetic nephropathy by Sulforaphane via up-regulation of Nrf2
  980. An open study of Sulforaphane-rich broccoli sprout extract in patients with schizophrenia
  981. Prevention of carcinogen-induced oral cancer by Sulforaphane
  982. Sulforaphane improves the bronchoprotective response in asthmatics through Nrf2-mediated gene pathways
  983. D, L-Sulforaphane loaded Fe3O4@ gold core shell nanoparticles: a potential Sulforaphane delivery system
  984. Sulforaphane bioavailability and chemopreventive activity in women scheduled for breast biopsy
  985. Epigenetic regulation by Sulforaphane: opportunities for breast and prostate cancer chemoprevention
  986. Sulforaphane produces antidepressant-and anxiolytic-like effects in adult mice
  987. Sulforaphane-rich broccoli sprout extract improves hepatic abnormalities in male subjects
  988. Metallothionein is downstream of Nrf2 and partially mediates Sulforaphane prevention of diabetic cardiomyopathy
  989. High hydrostatic pressure and ultrasound extractions of antioxidant compounds, Sulforaphane and fatty acids from Chilean papaya (Vasconcellea pubescens) seeds …
  990. Sulforaphane epigenetically enhances neuronal BDNF expression and TrkB signaling pathways
  991. Sulforaphane enhances temozolomide‐induced apoptosis because of down‐regulation of miR‐21 via Wnt/β‐catenin signaling in glioblastoma
  992. Sulforaphane inhibits hypoxia-induced HIF-1α and VEGF expression and migration of human colon cancer cells
  993. Phase 1 study of a Sulforaphane-containing broccoli sprout homogenate for sickle cell disease
  994. Sulforaphane suppresses in vitro and in vivo lung tumorigenesis through downregulation of HDAC activity
  995. Sulforaphane ameliorates neurobehavioral deficits and protects the brain from amyloid β deposits and peroxidation in mice with Alzheimer-like lesions
  996. Activation of Nrf2 by ischemic preconditioning and Sulforaphane in renal ischemia/reperfusion injury: a comparative experimental study.
  997. Nrf2 targeting by Sulforaphane: A potential therapy for cancer treatment
  998. Sulforaphane attenuates EGFR signaling in NSCLC cells
  999. Broccoli-derived Sulforaphane and chemoprevention of prostate cancer: from bench to bedside
  1000. Sulforaphane induces adipocyte browning and promotes glucose and lipid utilization
  1001. Stabilized Sulforaphane for clinical use: Phytochemical delivery efficiency
  1002. Modulation of apoptosis by Sulforaphane is associated with PGC-1α stimulation and decreased oxidative stress in cardiac myoblasts
  1003. Sulforaphane reduces apoptosis and oncosis along with protecting liver injury-induced ischemic reperfusion by activating the Nrf2/ARE pathway
  1004. The role of Sulforaphane in epigenetic mechanisms, including interdependence between histone modification and DNA methylation
  1005. … tone and impairs cognitive and motor function in hyperammonemia by increasing GAT-3 membrane expression. Reversal by Sulforaphane by promoting M2 …
  1006. Dietary intake of Sulforaphane-rich broccoli sprout extracts during juvenile and adolescence can prevent phencyclidine-induced cognitive deficits at adulthood
  1007. Nrf2 status affects tumor growth, HDAC3 gene promoter associations, and the response to Sulforaphane in the colon
  1008. Sulforaphane induces cell death through G2/M phase arrest and triggers apoptosis in HCT 116 human colon cancer cells
  1009. Sulforaphane reduces advanced glycation end products (AGEs)-induced inflammation in endothelial cells and rat aorta
  1010. Anabolic and antiresorptive modulation of bone homeostasis by the epigenetic modulator Sulforaphane, a naturally occurring isothiocyanate
  1011. The synthesis of Sulforaphane analogues and their protection effect against cisplatin induced cytotoxicity in kidney cells
  1012. The Ezh2 polycomb group protein drives an aggressive phenotype in melanoma cancer stem cells and is a target of diet derived Sulforaphane
  1013. Sulforaphane ameliorates okadaic acid-induced memory impairment in rats by activating the Nrf2/HO-1 antioxidant pathway
  1014. Sulforaphane ameliorates 3-nitropropionic acid-induced striatal toxicity by activating the Keap1-Nrf2-ARE pathway and inhibiting the MAPKs and NF-κB pathways
  1015. Involvement of the electrophilic isothiocyanate Sulforaphane in Arabidopsis local defense responses
  1016. Kinetic and thermodynamic studies of Sulforaphane adsorption on macroporous resin
  1017. Stimulation of suicidal erythrocyte death by Sulforaphane
  1018. Sulforaphane down-regulates SKP2 to stabilize p27KIP1 for inducing antiproliferation in human colon adenocarcinoma cells
  1019. Sulforaphane targets cancer stemness and tumor initiating properties in oral squamous cell carcinomas via miR-200c induction
  1020. Prophylactic effects of Sulforaphane on depression-like behavior and dendritic changes in mice after inflammation
  1021. Sulforaphane attenuates contrast-induced nephropathy in rats via Nrf2/HO-1 pathway
  1022. Evolution of Sulforaphane content in Sulforaphane-enriched broccoli during tray drying
  1023. Current potential health benefits of Sulforaphane
  1024. Pharmacokinetics and in vitro and in vivo delivery of Sulforaphane by PCL–PEG–PCL copolymeric-based micelles
  1025. Clinical and molecular evidence of the consumption of broccoli, glucoraphanin and Sulforaphane in humans
  1026. Sulforaphane protects the liver against CdSe quantum dot-induced cytotoxicity
  1027. Sulforaphane enhances the anticancer activity of taxanes against triple negative breast cancer by killing cancer stem cells
  1028. Long noncoding RNAs and Sulforaphane: a target for chemoprevention and suppression of prostate cancer
  1029. Sulforaphane induces apoptosis in adipocytes via Akt/p70s6k1/Bad inhibition and ERK activation
  1030. miR-19 targeting of GSK3β mediates Sulforaphane suppression of lung cancer stem cells
  1031. Sulforaphane exerts its anti-inflammatory effect against amyloid-β peptide via STAT-1 dephosphorylation and activation of Nrf2/HO-1 cascade in human THP-1 …
  1032. Sulforaphane induces apoptosis and inhibits invasion in U251MG glioblastoma cells
  1033. Sulforaphane attenuates activation of NLRP3 and NLRC4 inflammasomes but not AIM2 inflammasome
  1034. Lack of effect of oral Sulforaphane administration on Nrf2 expression in COPD: a randomized, double-blind, placebo controlled trial
  1035. Sulforaphane (SFN): an isothiocyanate in a cancer chemoprevention paradigm
  1036. A Glance at… Broccoli, glucoraphanin, and Sulforaphane
  1037. Sulforaphane improves outcomes and slows cerebral ischemic/reperfusion injury via inhibition of NLRP3 inflammasome activation in rats
  1038. Histone deacetylase inhibitor Sulforaphane: The phytochemical with vibrant activity against prostate cancer
  1039. Sulforaphane reverses chemo-resistance to temozolomide in glioblastoma cells by NF-κB-dependent pathway downregulating MGMT expression
  1040. Sulforaphane protects pancreatic acinar cell injury by modulating Nrf2-mediated oxidative stress and NLRP3 inflammatory pathway
  1041. Melatonin–Sulforaphane hybrid ITH 12674 induces neuroprotection in oxidative stress conditions by a ‘drug–prodrug’mechanism of action
  1042. Sulforaphane exerts anti-inflammatory effects against lipopolysaccharide-induced acute lung injury in mice through the Nrf2/ARE pathway
  1043. Sulforaphane induces differential modulation of mitochondrial biogenesis and dynamics in normal cells and tumor cells
  1044. Sulforaphane prevents quinolinic acid‐induced mitochondrial dysfunction in rat striatum
  1045. Sulforaphane for the chemoprevention of bladder cancer: molecular mechanism targeted approach
  1046. Sulforaphane is a Nrf2-independent inhibitor of mitochondrial fission
  1047. Sulforaphane-induced cell cycle arrest and senescence are accompanied by DNA hypomethylation and changes in microRNA profile in breast cancer cells
  1048. Sulforaphane Inhibits c‐Myc‐Mediated Prostate Cancer Stem‐Like Traits
  1049. Sulforaphane induces Nrf2 target genes and attenuates inflammatory gene expression in microglia from brain of young adult and aged mice
  1050. Sulforaphane prevents angiotensin II-induced cardiomyopathy by activation of Nrf2 via stimulating the Akt/GSK-3ss/Fyn pathway
  1051. Sulforaphane prevents testicular damage in kunming mice exposed to cadmium via activation of Nrf2/ARE signaling pathways
  1052. Sulforaphane inhibits HIV infection of macrophages through Nrf2
  1053. Sulforaphane reactivates cellular antioxidant defense by inducing Nrf2/ARE/Prdx6 activity during aging and oxidative stress
  1054. Sulforaphane reverses the expression of various tumor suppressor genes by targeting DNMT3B and HDAC1 in human cervical cancer cells
  1055. Sulforaphane inhibits invasion by phosphorylating ERK1/2 to regulate E-cadherin and CD44v6 in human prostate cancer DU145 cells
  1056. Sulforaphane improves chemotherapy efficacy by targeting cancer stem cell-like properties via the miR-124/IL-6R/STAT3 axis
  1057. Sulforaphane treatment of young men with autism spectrum disorder
  1058. Sulforaphane alone and in combination with clofarabine epigenetically regulates the expression of DNA methylation-silenced tumour suppressor genes in human …
  1059. The role of Sulforaphane in cancer chemoprevention and health benefits: a mini-review
  1060. Mechanisms for the inhibition of colon cancer cells by Sulforaphane through epigenetic modulation of microRNA-21 and human telomerase reverse transcriptase …
  1061. Sulforaphane suppresses EMT and metastasis in human lung cancer through miR-616-5p-mediated GSK3β/β-catenin signaling pathways
  1062. Sulforaphane reduces molecular response to hypoxia in ovarian tumor cells independently of their resistance to chemotherapy
  1063. Sulforaphane, a dietary isothiocyanate, induces G2/M arrest in Cervical cancer cells through CyclinB1 downregulation and GADD45β/CDC2 association
  1064. Sulforaphane inhibits proliferation and invasive activity of everolimus-resistant kidney cancer cells in vitro
  1065. Enhancement of glucosinolate and Sulforaphane formation of broccoli sprouts by zinc sulphate via its stress effect
  1066. Microencapsulation of Sulforaphane from broccoli seed extracts by gelatin/gum arabic and gelatin/pectin complexes
  1067. Sulforaphane inhibits cancer stem-like cell properties and cisplatin resistance through miR-214-mediated downregulation of c-MYC in non-small cell lung …
  1068. Sulforaphane prevents neuronal apoptosis and memory impairment in diabetic rats
  1069. Sulforaphane modulates telomerase activity via epigenetic regulation in prostate cancer cell lines
  1070. 17β-Estradiol enhances Sulforaphane cardioprotection against oxidative stress
  1071. The effect of Sulforaphane on the cell cycle, apoptosis and expression of cyclin D1 and p21 in the A549 non-small cell lung cancer cell line
  1072. Sulforaphane prevents methylmercury-induced oxidative damage and excitotoxicity through activation of the Nrf2-ARE pathway
  1073. Sulforaphane induces ROS mediated induction of NKG2D ligands in human cancer cell lines and enhances susceptibility to NK cell mediated lysis
  1074. Anti-nociceptive and anti-inflammatory actions of Sulforaphane in chronic constriction injury-induced neuropathic pain mice
  1075. A novel combination of withaferin A and Sulforaphane inhibits epigenetic machinery, cellular viability and induces apoptosis of breast cancer cells
  1076. Sulforaphane epigenetically regulates innate immune responses of porcine monocyte-derived dendritic cells induced with lipopolysaccharide
  1077. Sulforaphane rescues memory dysfunction and synaptic and mitochondrial alterations induced by brain iron accumulation
  1078. Sulforaphane preconditioning sensitizes human colon cancer cells towards the bioreductive anticancer prodrug PR-104A
  1079. Sulforaphane protection against the development of doxorubicin‐induced chronic heart failure is associated with Nrf2 Upregulation
  1080. Activation of human salivary aldehyde dehydrogenase by Sulforaphane: mechanism and significance
  1081. Sulforaphane inhibits TGF-β-induced epithelial-mesenchymal transition of hepatocellular carcinoma cells via the reactive oxygen species-dependent pathway
  1082. Sulforaphane, a natural component of broccoli, inhibits vestibular schwannoma growth in vitro and in vivo
  1083. A proof-of-concept clinical study examining the NRF2 activator Sulforaphane against neutrophilic airway inflammation
  1084. Effect of Sulforaphane on NOD2 via NF-κB: implications for Crohn’s disease
  1085. Antitumor activity and expression profiles of genes induced by Sulforaphane in human melanoma cells
  1086. … targeting of bladder tumor growth, survival, and epithelial-to-mesenchymal transition with a novel therapeutic combination of acetazolamide (AZ) and Sulforaphane
  1087. Synergy between Sulforaphane and selenium in protection against oxidative damage in colonic CCD841 cells
  1088. Sulforaphane protects against acrolein-induced oxidative stress and inflammatory responses: modulation of Nrf-2 and COX-2 expression
  1089. The effects of broccoli sprout extract containing Sulforaphane on lipid peroxidation and Helicobacter pylori infection in the gastric mucosa
  1090. Protective effect of Sulforaphane against retinal degeneration in the Pde6rd10 mouse model of retinitis pigmentosa
  1091. S6K1 controls autophagosome maturation in autophagy induced by Sulforaphane or serum deprivation
  1092. Sulforaphane activates the cerebral vascular Nrf2–ARE pathway and suppresses inflammation to attenuate cerebral vasospasm in rat with subarachnoid hemorrhage
  1093. Modulating glioma-mediated myeloid-derived suppressor cell development with Sulforaphane
  1094. Novel phosphonate analogs of Sulforaphane: Synthesis, in vitro and in vivo anticancer activity
  1095. Chemoprevention of oxidative stress-associated oral carcinogenesis by Sulforaphane depends on NRF2 and the isothiocyanate moiety
  1096. Preclinical systemic toxicity evaluation of chitosan-solid lipid nanoparticle-encapsulated aspirin and curcumin in combination with free Sulforaphane in BALB/c …
  1097. Sulforaphane formation and bioaccessibility are more affected by steaming time than meal composition during in vitro digestion of broccoli
  1098. Suppression of NLRP3 inflammasome by oral treatment with Sulforaphane alleviates acute gouty inflammation
  1099. Effects of Sulforaphane on neural stem cell proliferation and differentiation
  1100. Beneficial effects of Sulforaphane treatment in Alzheimer’s disease may be mediated through reduced HDAC1/3 and increased P75NTR expression
  1101. Sulforaphane promotes mitochondrial protection in SH-SY5Y cells exposed to hydrogen peroxide by an Nrf2-dependent mechanism
  1102. Sulforaphane, a cancer chemopreventive agent, induces pathways associated with membrane biosynthesis in response to tissue damage by aflatoxin B1
  1103. New highlights on the health-improving effects of Sulforaphane
  1104. Sulforaphane prevents rat cardiomyocytes from hypoxia/reoxygenation injury in vitro via activating SIRT1 and subsequently inhibiting ER stress
  1105. Anticancer activity of Sulforaphane: the epigenetic mechanisms and the Nrf2 signaling pathway
  1106. Sulforaphane-cysteine suppresses invasion via downregulation of galectin-1 in human prostate cancer DU145 and PC3 cells
  1107. Sulforaphane exerts anti-angiogenesis effects against hepatocellular carcinoma through inhibition of STAT3/HIF-1α/VEGF signalling
  1108. Heat and hypoxia stresses enhance the accumulation of aliphatic glucosinolates and Sulforaphane in broccoli sprouts
  1109. Sulforaphane and its methylcarbonyl analogs inhibit the LPS-stimulated inflammatory response in human monocytes through modulating cytokine production …
  1110. Interaction of Sulforaphane with DNA and RNA
  1111. Sulforaphane suppresses cardiac hypertrophy by inhibiting GATA4/GATA6 expression and MAPK signaling pathways
  1112. Sulforaphane attenuates the development of atherosclerosis and improves endothelial dysfunction in hypercholesterolemic rabbits
  1113. Sulforaphane inhibits platelet-derived growth factor-induced vascular smooth muscle cell proliferation by targeting mTOR/p70S6kinase signaling independent of Nrf2 …
  1114. Sulforaphane exerts neuroprotective effects via suppression of the inflammatory response in a rat model of focal cerebral ischemia
  1115. Sulforaphane metabolites cause apoptosis via microtubule disruption in cancer
  1116. Roles of ROS, Nrf2, and autophagy in cadmium-carcinogenesis and its prevention by Sulforaphane
  1117. Sulforaphane as an adjunctive to everolimus counteracts everolimus resistance in renal cancer cell lines
  1118. Sulforaphane induces neurovascular protection against a systemic inflammatory challenge via both Nrf2-dependent and independent pathways
  1119. Bioavailability and biotransformation of Sulforaphane and erucin metabolites in different biological matrices determined by LC–MS–MS
  1120. The effect of Sulforaphane on histone deacetylase activity in keratinocytes: Differences between in vitro and in vivo analyses
  1121. Sulforaphane attenuates pulmonary fibrosis by inhibiting the epithelial-mesenchymal transition
  1122. Sulforaphane augments glutathione and influences brain metabolites in human subjects: A clinical pilot study
  1123. Sulforaphane protects against high cholesterol-induced mitochondrial bioenergetics impairments, inflammation, and oxidative stress and preserves pancreatic β-cells …
  1124. Sulforaphane from broccoli reduces symptoms of autism: a follow-up case series from a randomized double-blind study
  1125. Inhibition of STAT3 phosphorylation by Sulforaphane reduces adhesion molecule expression in vascular endothelial cell
  1126. Sulforaphane protects against sodium valproate–induced acute liver injury
  1127. Protection of retinal function by Sulforaphane following retinal ischemic injury
  1128. Sulforaphane suppresses hepatitis C virus replication by up-regulating heme oxygenase-1 expression through PI3K/Nrf2 pathway
  1129. Activation of Nrf2 reduces UVA-mediated MMP-1 upregulation via MAPK/AP-1 signaling cascades: the photoprotective effects of Sulforaphane and hispidulin
  1130. The role of MicroRNAs in the chemopreventive activity of Sulforaphane from cruciferous vegetables
  1131. Sulforaphane reduces lipopolysaccharide-induced proinflammatory markers in hippocampus and liver but does not improve sickness behavior
  1132. Simultaneous quantification of sulforaphene and Sulforaphane by reverse phase HPLC and their content in Raphanus sativus L. var. caudatus Alef extracts
  1133. Efficacy of some non-conventional herbal medications (Sulforaphane, tanshinone IIA, and tetramethylpyrazine) in inducing neuroprotection in comparison with …
  1134. A functional pseudogene, NMRAL2P, is regulated by Nrf2 and serves as a coactivator of NQO1 in Sulforaphane‐treated colon cancer cells
  1135. Sulforaphane-cysteine-induced apoptosis via phosphorylated ERK1/2-mediated maspin pathway in human non-small cell lung cancer cells
  1136. Sulforaphane improves dysregulated metabolic profile and inhibits leptin-induced VSMC proliferation: implications toward suppression of neointima formation after …
  1137. Organofluorine isoselenocyanate analogues of Sulforaphane: Synthesis and anticancer activity
  1138. Mechanism of action of Sulforaphane as a superoxide radical anion and hydrogen peroxide scavenger by double hydrogen transfer: A model for iron superoxide …
  1139. Gastroprotective effects of Sulforaphane and thymoquinone against acetylsalicylic acid–induced gastric ulcer in rats
  1140. Epigenetic modification of Nrf2 by Sulforaphane increases the antioxidative and anti-inflammatory capacity in a cellular model of Alzheimer’s disease
  1141. Sulforaphane increases the efficacy of anti-androgens by rapidly decreasing androgen receptor levels in prostate cancer cells
  1142. Autophagic cell death and premature senescence: New mechanism of 5-fluorouracil and Sulforaphane synergistic anticancer effect in MDA-MB-231 triple negative …
  1143. Metabolism and antiproliferative effects of Sulforaphane and broccoli sprouts in human intestinal (Caco-2) and hepatic (HepG2) cells
  1144. What do we know about Sulforaphane protection against photoaging?
  1145. In Vitro-In Vivo Dose Response of Ursolic Acid, Sulforaphane, PEITC, and Curcumin in Cancer Prevention
  1146. Sulforaphane regulates NFE2L2/Nrf2-dependent xenobiotic metabolism phase II and phase III enzymes differently in human colorectal cancer and untransformed …
  1147. Sulforaphane alleviates lipopolysaccharide-induced spatial learning and memory dysfunction in mice: The role of BDNF-mTOR signaling pathway
  1148. Intermittent treatment with farnesyltransferase inhibitor and Sulforaphane improves cellular homeostasis in Hutchinson-Gilford progeria fibroblasts
  1149. Sulforaphane potentiates anticancer effects of doxorubicin and attenuates its cardiotoxicity in a breast cancer model
  1150. Modulating Potential of L‐Sulforaphane in the Expression of Cytochrome P450 to Identify Potential Targets for Breast Cancer Chemoprevention and Therapy Using …
  1151. Inhibition of class IIa histone deacetylase activity by gallic acid, Sulforaphane, TMP269, and panobinostat
  1152. Increased seizure susceptibility and other toxicity symptoms following acute Sulforaphane treatment in mice
  1153. Simultaneous targeting of differentiated breast cancer cells and breast cancer stem cells by combination of docetaxel-and Sulforaphane-loaded self-assembled poly …
  1154. Novel Sulforaphane-enabled self-microemulsifying delivery systems (SFN-SMEDDS) of taxanes: formulation development and in vitro cytotoxicity against breast …
  1155. Development and validation of a LC–MS/MS method to determine Sulforaphane in honey
  1156. Sulforaphane reverses gefitinib tolerance in human lung cancer cells via modulation of sonic hedgehog signaling
  1157. Sulforaphane regulates phenotypic and functional switching of both induced and spontaneously differentiating human monocytes
  1158. Preparation and characterization of PEGylated iron oxide-gold nanoparticles for delivery of Sulforaphane and curcumin
  1159. Sulforaphane-induced apoptosis involves the type 1 IP3 receptor
  1160. Inhibition of autophagy by 3-methyladenine potentiates Sulforaphane-induced cell death of BE (2)-C human neuroblastoma cells
  1161. Sulforaphane increases Nrf2 expression and protects alveolar epithelial cells against injury caused by cigarette smoke extract
  1162. Low-dose of the Sulforaphane precursor glucoraphanin as a dietary supplement induces chemoprotective enzymes in humans
  1163. Sulforaphane induced apoptosis via promotion of mitochondrial fusion and ERK1/2-mediated 26S proteasome degradation of novel pro-survival Bim and …
  1164. Assessment of Sulforaphane-induced protective mechanisms against cadmium toxicity in human mesenchymal stem cells
  1165. d, l-Sulforaphane induces ROS-dependent apoptosis in human gliomablastoma cells by inactivating STAT3 signaling pathway
  1166. The Sulforaphane and pyridoxamine supplementation normalize endothelial dysfunction associated with type 2 diabetes
  1167. HDAC5–LSD1 axis regulates antineoplastic effect of natural HDAC inhibitor Sulforaphane in human breast cancer cells
  1168. Sulforaphane reduces hmgb1-mediated septic responses and improves survival rate in septic mice
  1169. Sulforaphane induces p53‑deficient SW480 cell apoptosis via the ROS‑MAPK signaling pathway
  1170. LPS-induced expression of CD14 in the TRIF pathway is epigenetically regulated by Sulforaphane in porcine pulmonary alveolar macrophages
  1171. Sulforaphane‐induced apoptosis in human leukemia HL‐60 cells through extrinsic and intrinsic signal pathways and altering associated genes expression assayed …
  1172. Sulforaphane ameliorates bladder dysfunction through activation of the Nrf2-ARE pathway in a rat model of partial bladder outlet obstruction
  1173. Sulforaphane reduces YAP/∆ Np63α signaling to reduce cancer stem cell survival and tumor formation
  1174. Sulforaphane inhibits the generation of Amyloid-β oligomer and promotes spatial learning and memory in Alzheimer’s disease (PS1V97L) transgenic mice
  1175. Sulforaphane attenuates di‐N‐butylphthalate‐induced reproductive damage in pubertal mice: Involvement of the Nrf2‐antioxidant system
  1176. Treatment with Sulforaphane produces antinociception and improves morphine effects during inflammatory pain in mice
  1177. Protective effects of Sulforaphane in experimental vascular cognitive impairment: Contribution of the Nrf2 pathway
  1178. Antiglycative activity of Sulforaphane: a new avenue to counteract neurodegeneration?
  1179. Plant derived inhibitor Sulforaphane in combinatorial therapy against therapeutically challenging Pancreatic Cancer
  1180. Sulforaphane promotes ER stress, autophagy, and cell death: implications for cataract surgery
  1181. Endoplasmic reticulum stress mediates Sulforaphane-induced apoptosis of HepG2 human hepatocellular carcinoma cells
  1182. Calcium mitigates the stress caused by ZnSO 4 as a sulphur fertilizer and enhances the Sulforaphane formation of broccoli sprouts
  1183. Dietary Sulforaphane inhibits histone deacetylase activity in B16 melanoma cells
  1184. Sulforaphane effects on postinfarction cardiac remodeling in rats: modulation of redox-sensitive prosurvival and proapoptotic proteins
  1185. Sulforaphane protects human umbilical vein cells against lipotoxicity by stimulating autophagy via an AMPK-mediated pathway
  1186. Sulforaphane sensitizes human breast cancer cells to paclitaxel‑induced apoptosis by downregulating the NF‑κB signaling pathway
  1187. Sulforaphane modifies histone H3, unpacks chromatin, and primes defense
  1188. Sulforaphane prevents bleomycin‑induced pulmonary fibrosis in mice by inhibiting oxidative stress via nuclear factor erythroid 2‑related factor‑2 activation
  1189. Pro-oxidant activity of Sulforaphane and cisplatin potentiates apoptosis and simultaneously promotes autophagy in malignant mesothelioma cells
  1190. Sulforaphane attenuated the pro-inflammatory state induced by hydrogen peroxide in SH-SY5Y cells through the Nrf2/HO-1 signaling pathway
  1191. In vitro assessment of the indirect antioxidant activity of Sulforaphane in redox imbalance vanadium-induced
  1192. Sulforaphene and Sulforaphane in commonly consumed cruciferous plants contributed to antiproliferation in HCT116 colon cancer cells
  1193. Sulforaphane attenuates microglia-mediated neuronal necroptosis through down-regulation of MAPK/NF-κB signaling pathways in LPS-activated BV-2 microglia
  1194. Optimization of an incubation step to maximize Sulforaphane content in pre-processed broccoli
  1195. Sulforaphane‐induced apoptosis in X uanwei lung adenocarcinoma cell line XWLC‐05
  1196. Sulforaphane enhances irradiation effects in terms of perturbed cell cycle progression and increased DNA damage in pancreatic cancer cells
  1197. Sulforaphane potentiates growth-inhibiting and apoptosis-promoting activities of cisplatin following oxidative stress and mitochondrial dysfunction in malignant …
  1198. Antileukemic activity of Sulforaphane
  1199. Sulforaphane-cysteine induces apoptosis by sustained activation of ERK1/2 and caspase 3 in human glioblastoma U373MG and U87MG cells
  1200. Sulforaphane suppresses PRMT5/MEP50 function in epidermal squamous cell carcinoma leading to reduced tumor formation
  1201. Cloning of genes related to aliphatic glucosinolate metabolism and the mechanism of Sulforaphane accumulation in broccoli sprouts under jasmonic acid treatment
  1202. Sulforaphane protected the injury of human vascular endothelial cell induced by LPC through up-regulating endogenous antioxidants and phase II enzymes
  1203. Enhancement of cytotoxic effect on human head and neck cancer cells by combination of photodynamic therapy and Sulforaphane.
  1204. Competition-based, quantitative chemical proteomics in breast cancer cells identifies new target profiles for Sulforaphane
  1205. Sulforaphane improves disrupted ER-mitochondria interactions and suppresses exaggerated hepatic glucose production
  1206. Role of Sulforaphane in protection of gastrointestinal tract against H. pylori and NSAID-induced oxidative stress
  1207. Influence of Sulforaphane metabolites on activities of human drug-metabolizing cytochrome P450 and determination of Sulforaphane in human liver cells
  1208. Bioavailability of Glucoraphanin and Sulforaphane from High‐Glucoraphanin Broccoli
  1209. Sulforaphane protects against brain diseases: Roles of cytoprotective enzymes
  1210. Sulforaphane Upregulates the Heat Shock Protein Co‐Chaperone CHIP and Clears Amyloid‐β and Tau in a Mouse Model of Alzheimer’s Disease
  1211. Sulforaphane, a naturally occurring isothiocyanate, exhibits anti-inflammatory effects by targeting GSK3β/Nrf-2 and NF-κB pathways in T cells
  1212. Sulforaphane_for_granulosa_cells_to_study_oxidative_stress_in_vitro/links/5c762c46a6fdcc47159e8cd5/Appropriate-concentration-of-Hydrogen-Peroxide-and-Sulforaphane-for-granulosa-cells-to-study-oxidative-stress-in-vitro.pdf” target=”_blank” rel=”noopener” data-saferedirecturl=”https://www.google.com/url?hl=en&q=https://www.researchgate.net/profile/Md_Mahmodul_Sohel/publication/305737755_Appropriate_concentration_of_Hydrogen_Peroxide_and_Sulforaphane_for_granulosa_cells_to_study_oxidative_stress_in_vitro/links/5c762c46a6fdcc47159e8cd5/Appropriate-concentration-of-Hydrogen-Peroxide-and-Sulforaphane-for-granulosa-cells-to-study-oxidative-stress-in-vitro.pdf&source=gmail&ust=1579108247873000&usg=AFQjCNGKuflVcOmfFZZpCch60SG6KLFuow”>Appropriate concentration of Hydrogen Peroxide and Sulforaphane for granulosa cells to study oxidative stress in vitro
  1213. Extracellular matrix remodeling and modulation of inflammation and oxidative stress by Sulforaphane in experimental diabetic peripheral neuropathy
  1214. Sulforaphane protects granulosa cells against oxidative stress via activation of NRF2-ARE pathway
  1215. Sulforaphane ameliorates the insulin responsiveness and the lipid profile but does not alter the antioxidant response in diabetic rats
  1216. Identification of urinary metabolites that correlate with clinical improvements in children with autism treated with Sulforaphane from broccoli
  1217. Sulforaphane promotes immune responses in a WEHI‑3‑induced leukemia mouse model through enhanced phagocytosis of macrophages and natural killer …
  1218. Sulforaphane inhibits damage‐induced poly (ADP‐ribosyl) ation via direct interaction of its cellular metabolites with PARP‐1
  1219. Protective mechanism of Sulforaphane on cadmium-induced sertoli cell injury in mice testis via nrf2/are signaling pathway
  1220. Protective effects of Sulforaphane on cognitive impairments and ad-like lesions in diabetic mice are associated with the upregulation of Nrf2 transcription activity
  1221. Comparison of Adaptive Neuroprotective Mechanisms of Sulforaphane and its Interconversion Product Erucin in in Vitro and in Vivo Models of Parkinson’s Disease
  1222. Hormetic potential of Sulforaphane (SFN) in switching cells’ fate towards survival or death
  1223. Stable Sulforaphane protects against gait anomalies and modifies bone microarchitecture in the spontaneous STR/Ort model of osteoarthritis
  1224. Microwave heating modelling of a green smoothie: Effects on glucoraphanin, Sulforaphane and S‐methyl cysteine sulfoxide changes during storage
  1225. Concentration dependent antioxidative and apoptotic effects of Sulforaphane on bovine granulosa cells in vitro
  1226. Prostate cancer chemoprevention by Sulforaphane in a preclinical mouse model is associated with inhibition of fatty acid metabolism
  1227. Sulforaphane promotes murine hair growth by accelerating the degradation of dihydrotestosterone
  1228. Ellagic acid, Sulforaphane, and ursolic acid in the prevention and therapy of breast cancer: current evidence and future perspectives
  1229. Can Sulforaphane prevent the onset or slow the progression of osteoarthritis?
  1230. The therapeutic potential of Sulforaphane on light-induced photoreceptor degeneration through antiapoptosis and antioxidant protection
  1231. Effects of Sulforaphane and its S-and R-enantiomers on the expression and activities of human drug-metabolizing cytochromes P450
  1232. Concerted redox modulation by Sulforaphane alleviates diabetes and cardiometabolic syndrome
  1233. Sulforaphane prevents dexamethasone-induced muscle atrophy via regulation of the Akt/Foxo1 axis in C2C12 myotubes
  1234. The effects of Sulforaphane on the liver and remote organ damage in hepatic ischemia-reperfusion model formed with pringle maneuver in rats
  1235. Differential expression patterns of Nqo1, AKR1B8 and Ho-1 in the liver and small intestine of C57BL/6 mice treated with Sulforaphane
  1236. ROS-mediated activation of AMPK plays a critical role in Sulforaphane-induced apoptosis and mitotic arrest in AGS human gastric cancer cells.
  1237. Potential effects of Sulforaphane to fight obesity
  1238. Sulforaphane mitigates cadmium-induced toxicity pattern in human peripheral blood lymphocytes and monocytes
  1239. Sulforaphane prevents angiotensin II-induced testicular cell death via activation of NRF2
  1240. Chemopreventive activities of Sulforaphane and its metabolites in human hepatoma HepG2 cells
  1241. Analysis of autophagic flux in response to Sulforaphane in metastatic prostate cancer cells
  1242. Sulforaphane improves oxidative status without attenuating the inflammatory response or cardiac impairment induced by ischemia–reperfusion in rats
  1243. Sulforaphane attenuates postnatal proteasome inhibition and improves spatial learning in adult mice
  1244. Sulforaphane inhibits lipopolysaccharide-induced inflammation, cytotoxicity, oxidative stress, and miR-155 expression and switches to Mox phenotype …
  1245. Sulforaphane attenuates muscle inflammation in dystrophin-deficient Mdx mice via Nrf2-mediated inhibition of NF-κB signaling pathway
  1246. Sulforaphane epigenetically demethylates the CpG sites of the miR-9-3 promoter and reactivates miR-9-3 expression in human lung cancer A549 cells
  1247. Withaferin A and Sulforaphane regulate breast cancer cell cycle progression through epigenetic mechanisms
  1248. Sulforaphane Analogues with Heterocyclic Moieties: Syntheses and Inhibitory Activities against Cancer Cell Lines
  1249. Synergism between luteolin and Sulforaphane in anti-inflammation
  1250. Optimisation of enzymatic production of Sulforaphane in broccoli sprouts and their total antioxidant activity at different growth and storage days
  1251. TRAIL attenuates Sulforaphane-mediated Nrf2 and sustains ROS generation, leading to apoptosis of TRAIL-resistant human bladder cancer cells
  1252. Multimodal actions of the phytochemical Sulforaphane suppress both AR and AR-V7 in 22Rv1 cells: Advocating a potent pharmaceutical combination against …
  1253. Sulforaphane and epigallocatechin gallate restore estrogen receptor Expression by modulating epigenetic events in the breast cancer cell line MDA-MB-231: a …
  1254. Sulforaphane suppresses the growth of glioblastoma cells, glioblastoma stem cell–like spheroids, and tumor xenografts through multiple cell signaling pathways
  1255. Caspase-independent apoptosis in infected macrophages triggered by Sulforaphane via Nrf2/p38 signaling pathways
  1256. Sulforaphane suppresses cell growth and collagen expression of keloid fibroblasts
  1257. Cognition Enhancing Activity of Sulforaphane Against Scopolamine Induced Cognitive Impairment in Zebra Fish (Danio rerio)
  1258. Heterocyclic analogs of Sulforaphane trigger DNA damage and impede DNA repair in colon cancer cells: interplay of HATs and HDACs
  1259. Sulforaphane prevents maleic acid-induced nephropathy by modulating renal hemodynamics, mitochondrial bioenergetics and oxidative stress
  1260. Trace analysis of Sulforaphane in bee pollen and royal jelly by liquid chromatography–tandem mass spectrometry
  1261. Sulforaphane protects MLE-12 lung epithelial cells against oxidative damage caused by ambient air particulate matter
  1262. The effects of combinatorial genistein and Sulforaphane in breast tumor inhibition: role in epigenetic regulation
  1263. Combination cisplatin and Sulforaphane treatment reduces proliferation, invasion, and tumor formation in epidermal squamous cell carcinoma
  1264. Development and optimization of Sulforaphane-loaded nanostructured lipid carriers by the Box-Behnken design for improved oral efficacy against cancer: in vitro, ex …
  1265. Data on Sulforaphane treatment mediated suppression of autoreactive, inflammatory M1 macrophages
  1266. Sulforaphane, a natural isothiocyanate compound, improves cardiac function and remodeling by inhibiting oxidative stress and inflammation in a rabbit model …
  1267. In vitro Biological Effects of Sulforaphane (SFN), Epigallocatechin-3-gallate (EGCG), and Curcumin on Breast Cancer Cells: A Systematic Review of the Literature
  1268. Sulforaphane from cruciferous vegetables: recent advances to improve glioblastoma treatment
  1269. Differential effects of Sulforaphane in regulation of angiogenesis in a co-culture model of endothelial cells and pericytes
  1270. Role of Keap1-Nrf2 signaling in anhedonia symptoms in a rat model of chronic neuropathic pain: improvement with Sulforaphane
  1271. Broccoli seed extracts but not Sulforaphane have strong free radical scavenging activities
  1272. Sulforaphane promotes apoptosis, and inhibits proliferation and self-renewal of nasopharyngeal cancer cells by targeting STAT signal through miRNA-124-3p
  1273. Changes in Sulforaphane and Selenocysteine methyltransferase transcript levels in broccoli treated with sodium selenite
  1274. Dietary doses of Sulforaphane affect hepatic drug metabolizing enzymes in spontaneously hypertensive rats
  1275. Uncommon use of common measures in Sulforaphane trial
  1276. Co-delivery of Sulforaphane and curcumin with pegylated iron oxide-gold core shell nanoparticles for delivery to breast cancer cell line
  1277. Broccoli and human health: immunomodulatory effect of Sulforaphane in a model of colon cancer
  1278. Sulforaphane restores acetyl-histone H3 binding to Bcl-2 promoter and prevents apoptosis in ethanol-exposed neural crest cells and mouse embryos
  1279. Sulforaphane-N-Acetyl-Cysteine inhibited autophagy leading to apoptosis via Hsp70-mediated microtubule disruption
  1280. Homocysteine S-methyl transferase regulates Sulforaphane concentration in Brassica oleracea var. italica
  1281. Sulforaphane inhibited tumor necrosis factor-α induced migration and invasion in estrogen receptor negative human breast cancer cells
  1282. Isothiocyanate from Broccoli, Sulforaphane, and Its Properties
  1283. Anticarcinogenic activities of Sulforaphane are influenced by Nerve Growth Factor in human melanoma A375 cells
  1284. Sulforaphane Treatment of Stress Urinary Incontinence Via the Nrf2-ARE Pathway in a Rat Model
  1285. Sulforaphane induces autophagy by inhibition of HDAC6-mediated PTEN activation in triple negative breast cancer cells
  1286. Insights into the binding sites of Sulforaphane on insulin studied by electrospray ionization mass spectrometry
  1287. Sulforaphane inhibited the nociceptive responses, anxiety-and depressive-like behaviors associated with neuropathic pain and improved the anti-allodynic effects of …
  1288. Sulforaphane inhibits osteoclast differentiation by suppressing the cell-cell fusion molecules DC-STAMP and OC-STAMP
  1289. Sulforaphane regulates apoptosis-and proliferation‑related signaling pathways and synergizes with cisplatin to suppress human ovarian cancer
  1290. Sulforaphane suppresses the growth of triple-negative breast cancer stem-like cells in vitro and in vivo
  1291. Sulforaphane_in_Developmental_Stages_of_Broccoli_Brassica_oleracea_var_italica_L/links/57ad6ebd08ae7a6420c36a81/Development-and-Identification-of-Anti-cancer-Component-of-Sulforaphane-in-Developmental-Stages-of-Broccoli-Brassica-oleracea-var-italica-L.pdf” target=”_blank” rel=”noopener” data-saferedirecturl=”https://www.google.com/url?hl=en&q=https://www.researchgate.net/profile/Zhansheng_Li/publication/306060883_Development_and_Identification_of_Anti-cancer_Component_of_Sulforaphane_in_Developmental_Stages_of_Broccoli_Brassica_oleracea_var_italica_L/links/57ad6ebd08ae7a6420c36a81/Development-and-Identification-of-Anti-cancer-Component-of-Sulforaphane-in-Developmental-Stages-of-Broccoli-Brassica-oleracea-var-italica-L.pdf&source=gmail&ust=1579108247875000&usg=AFQjCNHedOxDbAGMznR14aJKwUstdhO91g”>Development and Identification of Anti-cancer Component of Sulforaphane in Developmental Stages of Broccoli (Brassica oleracea var. italica)
  1292. A new validated HPLC method for the determination of Sulforaphane: application to study pharmacokinetics of Sulforaphane in rats
  1293. L-Sulforaphane confers protection against oxidative stress in an in vitro model of age-related macular degeneration
  1294. Sulforaphane as anticancer agent: A double-edged sword? Tricky balance between effects on tumor cells and immune cells
  1295. Effects of Sulforaphane and vitamin E on cognitive disorder and oxidative damage in lead-exposed mice hippocampus at lactation
  1296. Protection against diabetic cardiomyopathy is achieved using a combination of Sulforaphane and zinc in type 1 diabetic OVE26 mice
  1297. Effect of glucoraphanin and Sulforaphane against chemotherapy‐induced neuropathic pain: Kv7 potassium channels modulation by H2S release in vivo
  1298. Sulforaphane Modulates AQP8-Linked Redox Signalling in Leukemia Cells
  1299. Effect of freezing methods on Sulforaphane formation in broccoli sprouts
  1300. Temporal efficacy of a Sulforaphane-based broccoli sprout diet in prevention of breast cancer through modulation of epigenetic mechanisms
  1301. Sulforaphane metabolites reduce resistance to paclitaxel via microtubule disruption
  1302. Sulforaphane inhibits human bladder cancer cell invasion by reversing epithelial-to-mesenchymal transition via directly targeting microrna-200c/zeb1 axis
  1303. Benzyl Sulforaphane is superior to Sulforaphane in inhibiting the Akt/MAPK and activating the Nrf2/ARE signalling pathways in HepG2 cells
  1304. Modulation of Adipocyte Differentiation and Proadipogenic Gene Expression by Sulforaphane, Genistein, and Docosahexaenoic Acid as a First Step to Counteract …
  1305. Sulforaphane suppresses oral cancer cell migration by regulating cathepsin S expression
  1306. The effects of Sulforaphane on canine osteosarcoma proliferation and invasion
  1307. Protective effect of Sulforaphane on renal damage caused by cadmium in rats
  1308. The effect of Sulforaphane on oxidative stress and inflammation in rats with toxic hepatitis induced by acetaminophene.
  1309. Sulforaphane improves ischemia-induced detrusor overactivity by downregulating the enhancement of associated endoplasmic reticulum stress, autophagy …
  1310. Sulforaphane salads.
  1311. Sulforaphane inhibits gastric cancer stem cells via suppressing sonic hedgehog pathway
  1312. Protective effects of Sulforaphane on di-n-butylphthalate-induced testicular oxidative stress injury in male mice offsprings via activating Nrf2/ARE pathway
  1313. Sulforaphane effects on oxidative stress parameters in culture of adult cardiomyocytes
  1314. Pharmacometrics of nutraceutical Sulforaphane and its implications in prostate cancer prevention
  1315. Thiol-reducing agents prevent Sulforaphane-induced growth inhibition in ovarian cancer cells
  1316. Sulforaphane sensitizes human cholangiocarcinoma to cisplatin via the downregulation of anti-apoptotic proteins
  1317. High resolution mass spectrometry studies of Sulforaphane and indole-3-carbinol in broccoli
  1318. Sulforaphane attenuates bisphenol A-induced 3T3-L1 adipocyte differentiation through cell cycle arrest
  1319. The isothiocyanate Sulforaphane modulates platelet function and protects against cerebral thrombotic dysfunction
  1320. Processing effects on antioxidant, glucosinolate, and Sulforaphane contents in broccoli and red cabbage
  1321. Correction to: Sulforaphane protects granulosa cells against oxidative stress via activation of NRF2-ARE pathway
  1322. Antitumor activity of Sulforaphane in mice model of skin cancer via blocking sulfatase‐2
  1323. Relevance of the natural HDAC inhibitor Sulforaphane as a chemopreventive agent in urologic tumors
  1324. Alleviating the progression of acute myeloid leukemia (AML) by Sulforaphane through controlling miR-155 levels
  1325. Sulforaphane-decorated gold nanoparticle for anti-cancer activity: in vitro and in vivo studies
  1326. Purified Sulforaphane from broccoli (Brassica oleracea var. italica) leads to alterations of CDX1 and CDX2 expression and changes in miR-9 and miR-326 levels in …
  1327. Sulforaphane delays fibroblast senescence by curbing cellular glucose uptake, increased glycolysis, and oxidative damage
  1328. Sulforaphane absorption and histone deacetylase activity following single dosing of broccoli sprout supplement in normal dogs
  1329. Sulforaphane inhibits the interferon-γ-induced expression of MIG, IP-10 and I-TAC in INS‑1 pancreatic β-cells through the downregulation of IRF-1, STAT-1 …
  1330. NMR study on the stabilization and chiral discrimination of Sulforaphane enantiomers and analogues by cyclodextrins
  1331. Sulforaphane Improves Lipid Metabolism by Enhancing Mitochondrial Function and Biogenesis In Vivo and In Vitro
  1332. Sulforaphane inhibits the activation of hepatic stellate cell by miRNA-423-5p targeting suppressor of fused
  1333. Sulforaphane inhibits inflammatory responses of primary human T-cells by increasing ROS and depleting glutathione
  1334. Assessment of global proteome in LNCaP cells by 2D-RP/RP LC–MS/MS following Sulforaphane exposure
  1335. Sulforaphane Alters β-Naphthoflavone-Induced Changes in Activity and Expression of Drug-Metabolizing Enzymes in Rat Hepatocytes
  1336. Activation of Nrf2 by Sulforaphane Inhibits High Glucose-Induced Progression of Pancreatic Cancer via AMPK Dependent Signaling
  1337. Fermentation for enhancing the bioconversion of glucoraphanin into Sulforaphane and improve the functional attributes of broccoli puree
  1338. Chemopreventive activity of Sulforaphane
  1339. Inhibition of breast cancer cell growth by the combination of clofarabine and Sulforaphane involves epigenetically mediated CDKN2A upregulation
  1340. Evaluation of biodistribution of Sulforaphane after administration of oral broccoli sprout extract in melanoma patients with multiple atypical nevi
  1341. Exploring the role of Sulforaphane in prostate metabolism
  1342. … vegetables as antioxidative, chemopreventive and antineoplasic functional foods: preclinical and clinical evidences of Sulforaphane against prostate cancers
  1343. The chemopreventive isothiocyanate Sulforaphane reduces anoikis resistance and anchorage-independent growth in non-small cell human lung cancer cells
  1344. Sulforaphane rescues amyloid-β peptide-mediated decrease in MerTK expression through its anti-inflammatory effect in human THP-1 macrophages
  1345. Combinations of the antioxidants Sulforaphane or curcumin and the conventional antineoplastics cisplatin or doxorubicin as prospects for anticancer chemotherapy
  1346. Sulforaphane, a chemopreventive compound, inhibits cyclooxygenase-2 and microsomal prostaglandin e synthase-1 expression in human ht-29 colon cancer cells
  1347. Sulforaphane protects rabbit corneas against oxidative stress injury in keratoconus through activation of the Nrf-2/HO-1 antioxidant pathway
  1348. Dose-response evaluation of brocolli sprout extract Sulforaphane (BSE-SFN) in melanoma patients (Pts) with atypical/dysplastic nevi (A/DN).
  1349. Sulforaphane Inhibits the Acquisition of Tobacco Smoke-Induced Lung Cancer Stem Cell-Like Properties via the IL-6/ΔNp63α/Notch Axis
  1350. Anti-Inflammatory Effect of Sulforaphane on LPS-Activated Microglia Potentially through JNK/AP-1/NF-κB Inhibition and Nrf2/HO-1 Activation
  1351. Supplementation of the Diet by Exogenous Myrosinase via Mustard Seeds to Increase the Bioavailability of Sulforaphane in Healthy Human Subjects after the …
  1352. Sulforaphane as a chemopreventive agent against oral carcinogenesis
  1353. Efficacy of SFX-01, a Sulforaphane-based drug, in experimental autoimmune encephalomyelitis
  1354. Bioavailability of Sulforaphane following ingestion of glucoraphanin-rich broccoli sprout and seed extracts with active myrosinase: A pilot study of the effects of proton …
  1355. Suppressive Effects of Sulforaphane on TGFBIp-mediated Sepsis
  1356. A New and Effective Approach to the Synthesis of Sulforaphane
  1357. Sulforaphane-conjugated selenium nanoparticles: towards a synergistic anticancer effect
  1358. Sulforaphane protects cells against lipopolysaccharide-stimulated inflammation in murine macrophages
  1359. Inhibitory Effect of Sulforaphane on Secretory Group IIA Phospholipase A 2
  1360. Storage in high-barrier pouches increases the Sulforaphane concentration in broccoli florets
  1361. Tanning bed use, risk of melanoma and opportunity for prevention with Sulforaphane
  1362. Abstract A121: Suppression of orthotopic pancreatic cancer growth by Sulforaphane is associated with activation of FOXO transcription factors
  1363. Protective mechanism of Sulforaphane in Nrf2 and anti-lung injury in ARDS rabbits
  1364. Sulforaphane suppresses sepsis-mediated renal functions in cecal ligation and puncture mouse model
  1365. Reversal of the Warburg phenomenon in chemoprevention of prostate cancer by Sulforaphane
  1366. Sulforaphane improves leptin responsiveness in high-fat high-sucrose diet-fed obese mice
  1367. Combating breast cancer using combination therapy with 3 phytochemicals: Piperine, Sulforaphane, and thymoquinone
  1368. High-Sulforaphane broccoli sprout powder reduces serum nitric oxide metabolites in Helicobacter pylori infected patients
  1369. Sulforaphane, polyphenols and related anti-inflammatory and antioxidant activities changes of Egyptian broccoli during growth
  1370. Benzoquinone toxicity is not prevented by Sulforaphane in CD‐1 mouse fetal liver cells
  1371. Sulforaphane protects from myocardial ischemia-reperfusion damage through the balanced activation of Nrf2/AhR
  1372. Effect of high-pressure homogenization on the extraction of Sulforaphane from broccoli (Brassica oleracea) seeds
  1373. Nano-Metal oxides induced Sulforaphane production and peroxidase activity in seedlings of Lepidium draba (Brassicaceae)
  1374. Sulforaphane ameliorates glucose intolerance in obese mice via the upregulation of the insulin signaling pathway
  1375. Sulforaphane suppresses the growth of triple-negative breast cancer stem-like cells in vitro and in vivo
  1376. Sulforaphane Modulates Joint Inflammation in a Murine Model of Complete Freund’s Adjuvant-Induced Mono-Arthritis
  1377. Sulforaphane ameliorates steroid insensitivity through an Nrf2-dependent pathway in cigarette smoke-exposed asthmatic mice
  1378. Synergistic chemopreventive effect of allyl isothiocyanate and Sulforaphane on non-small cell lung carcinoma cells
  1379. SMYD3-associated pathway is involved in the anti-tumor effects of Sulforaphane on gastric carcinoma cells
  1380. Sulforaphane Normalizes Intestinal Flora and Enhances Gut Barrier in Mice with BBN‐Induced Bladder Cancer
  1381. Sulforaphane Induces Apoptosis of Acute Human Leukemia Cells Through Modulation of Bax, Bcl-2 and Caspase-3
  1382. Human bronchial carcinoid tumor initiating cells are targeted by the combination of acetazolamide and Sulforaphane
  1383. Effects of α‐, β‐ and maltosyl‐β‐cyclodextrins use on the glucoraphanin–Sulforaphane system of broccoli juice
  1384. Protective effect of Sulforaphane against Arsenic-induced hepatotoxicity in rats: Role of PI3K/Akt-mediated Nrf2 signaling pathway
  1385. Sulforaphane-N-Acetyl-Cysteine Induces Autophagy Through Activation of ERK1/2 in U87MG and U373MG Cells
  1386. Activation of NQO1 in NQO1* 2 polymorphic human leukemic HL-60 cells by diet-derived Sulforaphane
  1387. Sulforaphane_action_exhibits_hormonal_and_metabolic_activities_in_the_rat_In_vivo_and_in_vitro_studies/links/5a3b5168a6fdcc7ffe64bda6/Acute-Sulforaphane-action-exhibits-hormonal-and-metabolic-activities-in-the-rat-In-vivo-and-in-vitro-studies.pdf” target=”_blank” rel=”noopener” data-saferedirecturl=”https://www.google.com/url?hl=en&q=https://www.researchgate.net/profile/Monika_Okulicz/publication/292074189_Acute_Sulforaphane_action_exhibits_hormonal_and_metabolic_activities_in_the_rat_In_vivo_and_in_vitro_studies/links/5a3b5168a6fdcc7ffe64bda6/Acute-Sulforaphane-action-exhibits-hormonal-and-metabolic-activities-in-the-rat-In-vivo-and-in-vitro-studies.pdf&source=gmail&ust=1579108247877000&usg=AFQjCNH2Wf3cuD9_vfknW_7iqmnceIMf9w”>Acute Sulforaphane action exhibits hormonal and metabolic activities in the rat: in vivo and in vitro studies
  1388. Sulforaphane attenuates angiotensin II-Induced vascular smooth muscle cell migration via suppression of NOX4/ROS/Nrf2 signaling
  1389. Sulforaphane enhances cisplatin sensitivity in human osteosarcoma cells through upregulation of p53-p21 pathway by enhancing G1 arrest
  1390. Correction: Lack of Effect of Oral Sulforaphane Administration on Nrf2 Expression in COPD: A Randomized, Double-Blind, Placebo Controlled Trial
  1391. Activation of Nrf2 by Sulforaphane via the AKT/GSK-3β/Fyn pathway prevents angiotensin ii-induced cardiomyopathy
  1392. Sulforaphane prevents chromium-induced lung injury in rats via activation of the Akt/GSK-3β/Fyn pathway
  1393. Protective effects of Sulforaphane on diabetic retinopathy: activation of the Nrf2 pathway and inhibition of NLRP3 inflammasome formation
  1394. Sulforaphane_Potentially_Ameliorates_Arsenic_Induced_Hepatotoxicity_in_Albino_Wistar_Rats_Implication_of_PI3KAktNrf2_Signaling_Pathway/links/5cb9bf9c299bf12097708f3b/Sulforaphane-Potentially-Ameliorates-Arsenic-Induced-Hepatotoxicity-in-Albino-Wistar-Rats-Implication-of-PI3K-Akt-Nrf2-Signaling-Pathway.pdf” target=”_blank” rel=”noopener” data-saferedirecturl=”https://www.google.com/url?hl=en&q=https://www.researchgate.net/profile/Md_Sahab_Uddin/publication/332423304_Sulforaphane_Potentially_Ameliorates_Arsenic_Induced_Hepatotoxicity_in_Albino_Wistar_Rats_Implication_of_PI3KAktNrf2_Signaling_Pathway/links/5cb9bf9c299bf12097708f3b/Sulforaphane-Potentially-Ameliorates-Arsenic-Induced-Hepatotoxicity-in-Albino-Wistar-Rats-Implication-of-PI3K-Akt-Nrf2-Signaling-Pathway.pdf&source=gmail&ust=1579108247877000&usg=AFQjCNEKrjYaOakKS8BaU1HRpw8yxXIESg”>Sulforaphane potentially ameliorates arsenic induced hepatotoxicity in albino Wistar rats: implication of PI3K/Akt/Nrf2 signaling pathway
  1395. Sulforaphane has a therapeutic effect in an atopic dermatitis murine model and activates the Nrf2/HO‑1 axis
  1396. Sulforaphane enhances apoptosis induced by Lactobacillus pentosus strain S‑PT84 via the TNFα pathway in human colon cancer cells
  1397. Preclinical systemic toxicity evaluation of chitosan-solid lipid nanoparticles encapsulated aspirin, curcumin and free Sulforaphane (ACS) combinations in BALB/c mice
  1398. Sulforaphane Improves Abnormal Lipid Metabolism via Both ERS‐Dependent XBP1/ACC &SCD1 and ERS‐Independent SREBP/FAS Pathways
  1399. Monodisperse Rattle-Structured Gold Nanorod-Mesoporous Silica Nanoparticles Core–Shell as Sulforaphane Carrier and its Sustained-Release Property
  1400. Sulforaphane protects the male reproductive system of mice from obesity-induced damage: involvement of oxidative stress and autophagy
  1401. Correction: Sulforaphane protected the injury of human vascular endothelial cell induced by LPC through up-regulating endogenous antioxidants and phase II …
  1402. HPLC Separation of Sulforaphane Enantiomers in Broccoli and Its Sprouts by Transformation into Diastereoisomers Using Derivatization with (S)-Leucine
  1403. Expression of cyclin B1, D1 and K in non‑small cell lung cancer H1299 cells following treatment with Sulforaphane
  1404. Enhancing the recovery of cabbage glucoraphanin through the monitoring of Sulforaphane content and myrosinase activity during extraction by different methods
  1405. The Investigations of the Effect of In-Vitro Combination Treatment: Curcumin, Aspirin, and Sulforaphane on Idiopathic Pulmonary Fibrosis
  1406. Identification of candidate genes for porcine meat quality and investigation of effects of Sulforaphane on porcine satellite cell
  1407. Influence of cold or frozen storage on temporal changes in Sulforaphane and objective taste values of broccoli (Brassica oleracea var. italica) florets
  1408. Sulforaphane-Induced Klf9/Prdx6 Axis Acts as a Molecular Switch to Control Redox Signaling and Determines Fate of Cells
  1409. Combination of Epigallocatechin Gallate and Sulforaphane Counteracts In Vitro Oxidative Stress and Delays Stemness Loss of Amniotic Fluid Stem Cells
  1410. Crucifera Sulforaphane (SFN) inhibits the growth of nasopharyngeal carcinoma through DNA methyltransferase 1 (DNMT1)/Wnt inhibitory factor 1 (WIF1) axis
  1411. In vitro modulation of redox and metabolism interplay at the brain vascular endothelium: genomic and proteomic profiles of Sulforaphane activity
  1412. Nrf2 expression and function, but not MT expression, is indispensable for Sulforaphane-mediated protection against intermittent hypoxia-induced …
  1413. Capsaicin and Sulforaphane prevent experimental liver fibrosis via upregulation of peroxisome proliferator-activated receptor gamma and nuclear factor (erythroid …
  1414. Co-treatment with Sulforaphane–zein microparticles enhances the chemopreventive potential of zinc in a 1, 2-dimethylhydrazine induced colon carcinogenesis rat …
  1415. Comparison of the effects of Sulforaphane and pioglitazone on insulin resistance and associated dyslipidemia, hepatosteatosis, and endothelial dysfunction in fructose …
  1416. The association between oxidative stress alleviation via Sulforaphane-induced Nrf2-HO-1/NQO-1 signaling pathway activation and chronic renal allograft dysfunction …
  1417. Falcarinol Is a Potent Inducer of Heme Oxygenase-1 and Was More Effective than Sulforaphane in Attenuating Intestinal Inflammation at Diet-Achievable Doses
  1418. Sulforaphane-Enriched Broccoli Sprouts Pretreated by Pulsed Electric Fields Reduces Neuroinflammation and Ameliorates Scopolamine-Induced Amnesia in Mouse …
  1419. Nrf2 activator, Sulforaphane ameliorates autism-like symptoms through suppression of Th17 related signaling and rectification of oxidant-antioxidant imbalance in …
  1420. Corrigendum to”Metallothionein plays a prominent role in the prevention of diabetic nephropathy by Sulforaphane via up-regulation of Nrf2”[Free Radic. Biol. Med. 89 …
  1421. Sulforaphane-in-cancer-prevention” target=”_blank” rel=”noopener” data-saferedirecturl=”https://www.google.com/url?hl=en&q=http://www.theoncologynurse.com/ton-issue-archive/2017-issues/september-2017-vol-10-no-5/17257-the-role-of-Sulforaphane-in-cancer-prevention&source=gmail&ust=1579108247878000&usg=AFQjCNHQG1GRiYPO8Fe85t44TxrzBiJlfQ”>The Role of Sulforaphane in Cancer Prevention
  1422. Sulforaphane and Atherosclerosis
  1423. Sulforaphane treatment of autism spectrum disorder
  1424. Sulforaphane/links/5a604cfba6fdcc21f487bc8a/In-vitro-Antidiabetic-Activity-of-Sulforaphane.pdf” target=”_blank” rel=”noopener” data-saferedirecturl=”https://www.google.com/url?hl=en&q=https://www.researchgate.net/profile/Chand_Basha3/publication/321046664_In_vitro_Antidiabetic_Activity_of_Sulforaphane/links/5a604cfba6fdcc21f487bc8a/In-vitro-Antidiabetic-Activity-of-Sulforaphane.pdf&source=gmail&ust=1579108247878000&usg=AFQjCNFhQPMcipxtzphY_4EJrT3UKeSQdg”>In vitro Antidiabetic Activity of Sulforaphane
  1425. Sulforaphane: A POTENTIAL CHEMOPREVENTIVE AGENT
  1426. Printing: Broccoli saves lives: How Sulforaphane can prevent
  1427. Sulforaphane_from_Iraqi_Kurdistan_region_cabbage/links/571dfcad08aeaced7889d202/Extraction-of-Sulforaphane-from-Iraqi-Kurdistan-region-cabbage.pdf” target=”_blank” rel=”noopener” data-saferedirecturl=”https://www.google.com/url?hl=en&q=https://www.researchgate.net/profile/Qasim_Mohammed2/publication/301621390_Extraction_of_Sulforaphane_from_Iraqi_Kurdistan_region_cabbage/links/571dfcad08aeaced7889d202/Extraction-of-Sulforaphane-from-Iraqi-Kurdistan-region-cabbage.pdf&source=gmail&ust=1579108247878000&usg=AFQjCNEyuIZkiMSaLw7B4F0lE4Enyer5cg”>EXTRACTION OF Sulforaphane FROM rRAQt (KURDTSTAN REGTON) CABBAGE
  1428. Sulforaphane Treatment of Children with Autism Spectrum Disorder
  1429. Quantum-chemical calculation of antioxidant properties of Sulforaphane
  1430. Sulforaphane_alleviates_muscular_dystrophy_in_mdx_mice_by_activation_of_Nrf2/links/5565663108ae89e758fda029.pdf” target=”_blank” rel=”noopener” data-saferedirecturl=”https://www.google.com/url?hl=en&q=https://www.researchgate.net/profile/Chengcao_Sun/publication/270962860_Sulforaphane_alleviates_muscular_dystrophy_in_mdx_mice_by_activation_of_Nrf2/links/5565663108ae89e758fda029.pdf&source=gmail&ust=1579108247878000&usg=AFQjCNFsaQIxXqcBgsasTLtsEe9XpdX-rg”>Sulforaphane alleviates muscular dystrophy in
  1431. In-vitro pharmacological evaluation of Sulforaphane from Brassica oleracea
  1432. Study on Difference of Sulforaphane in Cabbage Head and Different Organs of Broccoli
  1433. Sulforaphane and Its Relationship with the Intestinal Flora
  1434. Sulforaphane_ameliorates_photoreceptor_degeneration_in_Pde6rd10_mice/links/5741d24408ae9ace84187664″ target=”_blank” rel=”noopener” data-saferedirecturl=”https://www.google.com/url?hl=en&q=https://www.researchgate.net/profile/Minzhong_Yu/publication/303405937_Sulforaphane_ameliorates_photoreceptor_degeneration_in_Pde6rd10_mice/links/5741d24408ae9ace84187664&source=gmail&ust=1579108247878000&usg=AFQjCNFzOVH1Ex5Ego7dVG4J6w8VliJn9A”>Sulforaphane ameliorates photoreceptor degeneration in Pde6 rd10 mice
  1435. Sulforaphane blocks HIV infection of macrophages (IRC4P. 459)
  1436. Protective Effect of Sulforaphane on Reproductive Function of Male Mice with Cadmium Poisoning
  1437. Sulforaphane as a chemosensitizer for standard-chemotherapy in experimental colorectal carcinoma
  1438. Insights about stabilization of Sulforaphane through microencapsulation
  1439. A Novel Combination of Sulforaphane and Maitake Extract Induces Phase II Enzymes
  1440. Process of Sulforaphane extracted from waste of Carmine radish
  1441. The neuroprotective mechanisms and effects of Sulforaphane
  1442. Effects of Sulforaphane on the apoptosis in human gastric cancer cells via regulating PI3K/Akt signaling pathway
  1443. Sulforaphane Improves Hyperoxia Compromised Phagocytic Function In Macrophages
  1444. Sulforaphane Treatment of Children with Autism Spectrum Disorder
  1445. The Role of Sulforaphane in Microtubule Dynamics and Organisation in Health and Cancer
  1446. Potential role of dietary Sulforaphane in neuroprotection
  1447. Improving Sulforaphane bioavailability from cooked broccoli
  1448. Sulforaphane attenuates postnatal proteasome inhibition and improve spatial learning in adult mice
  1449. Investigating the Mechanism of Action of Sulforaphane in a Human Leukemia Cell Line
  1450. Effects of Sulforaphane, Glycine and FOLFOX on both human colorectal cancer and endothelial cells
  1451. Sulforaphane-in-protection-against-uv-ra” target=”_blank” rel=”noopener” data-saferedirecturl=”https://www.google.com/url?hl=en&q=https://jhu.pure.elsevier.com/en/publications/the-multifaceted-role-of-Sulforaphane-in-protection-against-uv-ra&source=gmail&ust=1579108247879000&usg=AFQjCNH1m0-dL81G_kHJGK2iP2VqXwnLpQ”>The multifaceted role of Sulforaphane in protection against uv radiation-mediated skin damage
  1452. The Effect of Frozen Storage Preparation Method on Sulforaphane Content in Kale
  1453. Sulforaphane mitigates cadmium-induced toxicity pattern in human
  1454. Extraction, purification and identification of Sulforaphane from broccoli byproducts.
  1455. Sulforaphane Treatment of Children with Autism Spectrum Disorder–A Progress Report
  1456. Sulforaphane Inhibits Liver Cancer Cell Growth and Angiogenesis.
  1457. Sulforaphane suppresses metastasis via autophagic degradation of cathepsin S in oral cancer cells
  1458. Genistein in Combination with Sulforaphane for the Treatment of Type 2 Diabetes
  1459. Sulforaphane-INDUCED_MITOCHONDRIAL_BIOGENESIS_IN_CYTOPROTECTION_AND_CELL_DEATH/links/5834a86b08aef19cb81f8e5f/Sulforaphane-INDUCED-MITOCHONDRIAL-BIOGENESIS-IN-CYTOPROTECTION-AND-CELL-DEATH.pdf” target=”_blank” rel=”noopener” data-saferedirecturl=”https://www.google.com/url?hl=en&q=https://www.researchgate.net/profile/Mario_Negrette-Guzman/publication/301747911_Sulforaphane-INDUCED_MITOCHONDRIAL_BIOGENESIS_IN_CYTOPROTECTION_AND_CELL_DEATH/links/5834a86b08aef19cb81f8e5f/Sulforaphane-INDUCED-MITOCHONDRIAL-BIOGENESIS-IN-CYTOPROTECTION-AND-CELL-DEATH.pdf&source=gmail&ust=1579108247879000&usg=AFQjCNFMtINjIg43JvWofYBkPxC669XGdQ”>Sulforaphane-INDUCED MITOCHONDRIAL BIOGENESIS IN CYTOPROTECTION AND CELL DEATH
  1460. Optimization of enzymatic hydrolysis conditions for extracting Sulforaphane from waste of carmine radish
  1461. Sulforaphane-assisted preparation of tellurium flower-like nanoparticles
  1462. Sulforaphane Induces Colorectal Cancer Cell Proliferation through Nrf2 Activation in a p53-Dependent Manner
  1463. Sulforaphane-induced_apoptosis_involves_the_type_1_IP_3_receptor/links/571f59b108aed056fa234548.pdf” target=”_blank” rel=”noopener” data-saferedirecturl=”https://www.google.com/url?hl=en&q=https://www.researchgate.net/profile/Sona_Hudecova/publication/301637843_Sulforaphane-induced_apoptosis_involves_the_type_1_IP_3_receptor/links/571f59b108aed056fa234548.pdf&source=gmail&ust=1579108247879000&usg=AFQjCNEKDlmDiyNoxb7Nr7x7JJXi0hMktw”>Sulforaphane-induced apoptosis involves the type 1 IP
  1464. Analysis of Sulforaphane by HPLC-MS/MS in vitro and in vivo: Chemical Stability, Metabolic Rate and Metabolites.
  1465. Sulforaphane attenuates inflammasome activation byinhibiting mitochondrial reactive oxygen species
  1466. Expanding Epigenetic Mechanisms of Sulforaphane in Colorectal Cancer: Pseudogenes and Protein Acetylation
  1467. Investigating the effect of Sulforaphane on Angiogenesis in Chick’s Chorioallantoic membrane and its antioxidant activities
  1468. Effects of Sulforaphane on Human Chondrocytes Cultured In Vitro
  1469. Role of Nrf2 and NQO1 in the attenuation of oxygen-mediated pulmonary toxicity by Sulforaphane
  1470. Paracellular Transport of Sulforaphane across Caco-2 Cell Monolayers
  1471. L12 Sulforaphane reduces the level of exogenous mutated huntingtin protein in normal human fibroblasts
  1472. L-Sulforaphane Decreased Contractile Response in Mesenteric Arteries in A Rat Model of Gestational Hypertension
  1473. Role Of NQO1 In The Attenuation Of Oxygen-Mediated Pulmonary Toxicity By Sulforaphane
  1474. Enhancing Sulforaphane formation and biovailabilty in some cooked Brassica vegetables
  1475. The effects of Sulforaphane on normal and cancerous epithelial cells
  1476. Sulforaphane Reduces Inflammatory Gene Expression in Microglia from Aged Mice
  1477. Dietary Polyphenols and Sulforaphane: Impact on Hallmarks of Colon Cancer (P06-045-19)
  1478. L-Sulforaphane Decreased Contractile Response in Mesenteric Arteries in a Rat Model of Gestational Hypertension
  1479. Anti-Inflammatory Effects of Sulforaphane on Adipose Tissue Macrophages Isolated from Obese Subjects with and Without Asthma
  1480. 4.59 OPEN LABEL CLINICAL TRIAL OF Sulforaphane IN SCHOOL-AGED CHILDREN WITH AUTISM
  1481. A73 BEYOND CIGARETTE SMOKE IN COPD: Effect Of Sulforaphane Treatment On The Airway Microbiome In COPD
  1482. Chemoprevention against colon cancer by dietary intake of Sulforaphane
  1483. Effects of Sulforaphane in the central nervous system
  1484. Inhibitory Effects of Sulforaphane on Polyphosphate-mediated Septic Responses
  1485. Sulforaphane_on_duchenne_muscular_dystrophy_by_activation_of_Nrf2/links/55eface908aef559dc44deee/The-role-of-Sulforaphane-on-duchenne-muscular-dystrophy-by-activation-of-Nrf2.pdf” target=”_blank” rel=”noopener” data-saferedirecturl=”https://www.google.com/url?hl=en&q=https://www.researchgate.net/profile/Chengcao_Sun/publication/281605368_The_role_of_Sulforaphane_on_duchenne_muscular_dystrophy_by_activation_of_Nrf2/links/55eface908aef559dc44deee/The-role-of-Sulforaphane-on-duchenne-muscular-dystrophy-by-activation-of-Nrf2.pdf&source=gmail&ust=1579108247880000&usg=AFQjCNH9q7YEENzTBXPVKo-1LB_BUzHK-w”>The role of Sulforaphane on duchenne muscular dystrophy by activation of Nrf2
  1486. Sulforaphane and sulforaphene: Two potential anticancer compounds from glucosinolates
  1487. Mechanism of protective effect of Sulforaphane against radiation-induced lung injury in mice
  1488. Study on the Changes of Sulforaphane in Pickling Process of Chaoshan Pickles and Pickled Radish
  1489. Effects of dietary compounds Sulforaphane and withaferin a on MCF-7 breast cancer cells
  1490. Sulforaphane Content in Different Organs of Lepidium draba from Different Ecotype of Kerman Province
  1491. Sulforaphane Protects Against Hyperoxic Toxicity Via NF-E2 Related Factor (Nrf2) Pathway: Implications For Bronchopulmonary Dysplasia
  1492. The isothiocyanate Sulforaphane inhibits mTOR in an NRF2-independent manner
  1493. P37 Sulforaphane modulates joint inflammation in mouse CFA-induced mono-arthritis
  1494. In silico study of Sulforaphane interaction with LasR of P. aeruginosa
  1495. Sulforaphane suppressed the proliferation of glioma stem cells via miR-124
  1496. Dietary Sulforaphane attenuates vascular remodelling in a partially p62 dependent manner
  1497. The effect of the Sulforaphane aqueous extract on the quality indicators of the fermented product
  1498. Development of an Electrochemical Biosensor for Sulforaphane Determination in Carmine Radish
  1499. Glucoraphanin and Sulforaphane evolution during juice preparation from broccoli sprouts
  1500. Sulforaphane enhances proliferation of porcine satellite cells through suppression of TGF-β signaling pathway
  1501. Role of Sulforaphane on Alleviating Duchenne Muscular Dystrophy (DMD) through Activation of Nrf2
  1502. Sulforaphane Bioavailability and Chemopreventive Activity in Women Scheduled for Breast Biopsy
  1503. Orthogonal experimental design optimizes the compound extraction process of Sulforaphane from broccoli seeds
  1504. Intensifying Sulforaphane formation in broccoli sprouts by using other cruciferous sprouts additions
  1505. Sulforaphane-mediated_inhibition_of_SHP2_as_a_potential_pharmacotherapy_for_Noonan_syndrome/links/5be4247e299bf1124fc35573/Sulforaphane-mediated-inhibition-of-SHP2-as-a-potential-pharmacotherapy-for-Noonan-syndrome.pdf” target=”_blank” rel=”noopener” data-saferedirecturl=”https://www.google.com/url?hl=en&q=https://www.researchgate.net/profile/Ewald_Schroder/publication/328682991_Sulforaphane-mediated_inhibition_of_SHP2_as_a_potential_pharmacotherapy_for_Noonan_syndrome/links/5be4247e299bf1124fc35573/Sulforaphane-mediated-inhibition-of-SHP2-as-a-potential-pharmacotherapy-for-Noonan-syndrome.pdf&source=gmail&ust=1579108247881000&usg=AFQjCNG8XgaHfgLaYxMtVCS2Zrjnlx5wig”>Sulforaphane-mediated inhibition of SHP2 as a potential pharmacotherapy for Noonan syndrome
  1506. Sulforaphane Abrogates Steroid Insensitivity In Cigarette Smoke-Induced Airway Inflammation Through Nrf2 Dependent Pathway
  1507. Effects of Sulforaphane combined with dextromethorphan on neurotoxicity induced by methylmercury in rats
  1508. Sulforaphane ameliorates high-fat diet-induced spermatogenic deficiency in mice
  1509. Inhibition of STAT3 phosphorylation by Sulforaphane reduces the lipopolysaccharide-induced adhesion molecule expression in vascular endothelial cell
  1510. Sulforaphane is a novel inhibitor of breast cancer-induced osteolytic bone resorption
  1511. Neuroprotective Effects of Sulforaphane and the Involvement of Autophagy
  1512. In Silico Drug-Designing Studies on Sulforaphane Analogues: Pharmacophore Mapping, Molecular Docking and QSAR Modeling.
  1513. Characterizing the Roles of Dietary Sulforaphane in Human Health
  1514. The Response to Sulforaphane in Metastatic Prostate Cancer Cells
  1515. Sulforaphane prevents PC12 cells from oxidative damage via the Nrf2 pathway
  1516. PM365. Effects of Sulforaphane in the maternal immune activation model of schizophrenia
  1517. Effect Of Prenatal Antioxidant Sulforaphane On Developing Lung Disorder In Neonatal Mice
  1518. Impact of Sulforaphane on FOLFOX induced toxicity to human colon cancer cells
  1519. Protective effects of Sulforaphane against mercury-induced liver oxidative stress in rats
  1520. Abstract CN12-03: Epigenetic targets of Sulforaphane and epigallocatechin gallate in cancer prevention
  1521. Sulforaphane ameliorates oxidative stress induced vascular calcification by regulating Nrf-2 and Sirt-1
  1522. Sulforaphane improves endothelial function and reduces placental oxidative stress in vitro
  1523. Role of c-Myc in prostate cancer stem-like cell inhibition by Sulforaphane
  1524. Pro-and anti-inflammatory effects of Sulforaphane on placental cytokine production
  1525. Gene targets of Sulforaphane in head and neck squamous cell carcinoma
  1526. Effects of Sulforaphane in the Tumor Microenvironment of Triple-Negative Breast Cancer
  1527. Antioxidant effects of Sulforaphane in human HepG2 cells and immortalised hepatocytes
  1528. Targeting PLIN2/PLIN5‐PPARγ: Sulforaphane Disturbs the Maturation of Lipid Droplets
  1529. Sulforaphane Alters the Acidification of the Vacuole to Trigger Cell Death
  1530. A Novel Glucan-Sulforaphane Combination Stimulates Immune Response to Influenza in Mouse Model
  1531. Hepatic protective effects of Sulforaphane through the modulation of inflammatory pathways
  1532. Correlation between Sulforaphane and Glutathione Peroxides-1 Accelerates Breast Cancer Cell Apoptosis
  1533. Evaluation of Sulforaphane as a Potential Bladder Cancer Chemopreventive Agent
  1534. Sulforaphane Attenuates Endometriosis in Rat Models Through Inhibiting PI3K/Akt Signaling Pathway
  1535. The Anti-Inflammatory Effect of Sulforaphane in Mice with Experimental Autoimmune Encephalomyelitis
  1536. Sulforaphane Treatment of Children with Autism Spectrum Disorder (ASD)–A Progress Report (N1. 002)
  1537. Emerging promise of Sulforaphane-mediated Nrf2 signaling cascade against neurological disorders
  1538. Sulforaphane Mediates Glutathione Depletion via Polymeric Nanoparticles to Restore Cisplatin Chemosensitivity
  1539. Sulforaphane sensitizes human cholangiocarcinoma to cisplatin via the downregulation of anti-apoptotic proteins
  1540. Supplementation with the Antioxidant Sulforaphane Does Not Protect Airway Epithelium Against O3-Induced Injury In Vivo
  1541. Chronic Sulforaphane Application Does Not Induce Resistance in Renal Cell Carcinoma Cells
  1542. Development of prolamin-based composite nanoparticles for controlled-release of Sulforaphane
  1543. Sulforaphane and myricetin act synergistically to induce apoptosis in 3T3‑L1 adipocytes
  1544. Synergistic Mediation of Sulforaphane and Vitamin D on the Wnt-signaling Pathway
  1545. Sulforaphane attenuates diâ Nâ butylphthalateâ induced reproductive damage in pubertal mice: Involvement of the Nrf2â antioxidant system
  1546. Inhibition of autophagy enhances mitochondria-mediated apoptosis in malignant mesothelioma cells by cisplatin and Sulforaphane
  1547. Daily Intake of Sulforaphane-Rich Broccoli Sprouts Normalizes Bowel Habits in Healthy Human Subjects
  1548. Effect of a Sulforaphane and Maitake Mushroom Extract Combination on the Expression of Glutamate Cysteine Ligase
  1549. Investigation of hypochlorite (NaOCl) effect on stress response of LactoSeven® microbiome and efficacy protection of Sulforaphane against oxygenation
  1550. B52 NEONATAL LUNG DISEASE: FROM BENCH TO BABIES: Sulforaphane Protects Against Hyperoxic Toxicity Via Nf-E2 Related Factor (nrf2) Pathway: Implications …
  1551. Broccoli or Sulforaphane: Is It the Source or Dose That Matters?
  1552. The effects of Sulforaphane in the rat model of experimental intestinal ischemia reperfusion
  1553. Neuroprotective Effects of Sulforaphane on Oxygen/Glucose Deprived Neurons and Astrocytes
  1554. Sulforaphane improves voiding function via the preserving mitochondrial function in diabetic rats
  1555. Transcriptome reveals the gene expression patterns of Sulforaphane metabolism in broccoli florets
  1556. Abstract TP573: Nrf2 Activation With Sulforaphane Reduces Post-Stroke Cognitive Impairment in Mice
  1557. Sulforaphane-curcumin-and-quercetin” target=”_blank” rel=”noopener” data-saferedirecturl=”https://www.google.com/url?hl=en&q=https://ukm.pure.elsevier.com/en/publications/the-effects-of-equal-doses-of-Sulforaphane-curcumin-and-quercetin&source=gmail&ust=1579108247882000&usg=AFQjCNHMOt5_mUNUd4hcJe1KJu2iB3kusQ”>The effects of equal doses of Sulforaphane, curcumin and quercetin on Heme Oxygenase-1 gene and protein expression in mice liver
  1558. Sulforaphane Decrease of SERTAD1 Expression Triggers G1/S Arrest in Breast Cancer Cells
  1559. Mechanistic study of anti-tumor activity of Sulforaphane on nasopharyngeal carcinoma
  1560. Role of Sulforaphane in improving negative symptoms and cognitive symptoms of schizophrenia and the underlying mechanism
  1561. Effects of Sulforaphane on ultrastructure and IL-1β of hippocampal in Alzheimer’s disease rat
  1562. Activation of Nrf2 pathway by Sulforaphane against mercury-induced liver oxidative damage in rats
  1563. Sulforaphane ameliorates arsenic-induced oxidative nephropathy in rats: role of Nrf2 gene via PI3K/Akt signaling pathway
  1564. Effects of liraglutide and Sulforaphane on peripheral neuropathy in diabetes induced in rats
  1565. Sulforaphane triggers a functional elongation of microglial process via the Akt signal
  1566. THE STUDY OF ZN 2+ AND CU 2+ EFFECTS ON MYROSINASE ACTIVITY AND Sulforaphane PRODUCTION IN LEPIDIUM DRABA
  1567. The Effect Of Sulforaphane On Airway Dysfunction In Mice After Chlorine Gas exposure
  1568. Effect of Sulforaphane and 5-aza-2′-deoxycytidine on melanoma cell growth
  1569. Preliminary Report on the Breeding of F1 Hybrid Between Broccolini with High Sulforaphane.
  1570. Anticancer activity of Sulforaphane and allyl isothiocyanate-conjugated silicon quantum dots
  1571. Effect of the Drying Conditions in a Pulsed Fluidized Bed Dryer on the Sulforaphane Content of Broccoli
  1572. Natural Sulforaphane From Broccoli Seeds Against Influenza A Virus Replication in MDCK Cells
  1573. Assessment of Sulforaphane-induced protective mechanisms against cadmium toxicity in human mesenchymal stem cells
  1574. C26 TREATMENT OF RESPIRATORY INFECTIONS: Sulforaphane Increases Scavenger Receptor Marco Expression And Host Survival In A Model Of Post-Influenza …
  1575. Combination of docetaxel with Sulforaphane synergistically inhibits triple negative breast cancer and cancer stem cells
  1576. Sulforaphane inhibits growth and blocks Wnt/β-catenin signaling of colorectal cancer cells
  1577. The Role of the Gut Microbiome in Quercetin Inhibition of Sulforaphane Bioavailability and Bioactivity in Rats
  1578. Pharmacokinetic evaluation of novel nano-formulations of aspirin, curcumin and Sulforaphane for pancreatic cancer chemoprevention
  1579. Fluoroaryl analogs of Sulforaphane–A group of compounds of anticancer and antimicrobial activity
  1580. Research on the Antioxident Function of Sulforaphane on the Leydig Cells of Cadmium Exposured Mice
  1581. Inhibition of STAT3 Phosphorylation by Sulforaphane Reduces Adhesion Molecule Expression in Vascular Endothelial Cell
  1582. Anti-obesity effect of Sulforaphane involves inhibition of HDAC8 but not Nrf2
  1583. Overexpression of ALDH1A1 is associated with poor prognosis and therapeutic effects of Sulforaphane in esophageal cancer
  1584. Sulforaphane_Supplementation_in_an_Immortalizedhuman_Keratinocyte_HaCaT_Cell_Line_Exposed_to_UVB_Irradiation/links/5c633f85299bf1d14cc1f255/Kinetics-of-Sulforaphane-Supplementation-in-an-Immortalizedhuman-Keratinocyte-HaCaT-Cell-Line-Exposed-to-UVB-Irradiation.pdf” target=”_blank” rel=”noopener” data-saferedirecturl=”https://www.google.com/url?hl=en&q=https://www.researchgate.net/profile/Huda_Albarnawi/publication/330788153_Kinetics_of_Sulforaphane_Supplementation_in_an_Immortalizedhuman_Keratinocyte_HaCaT_Cell_Line_Exposed_to_UVB_Irradiation/links/5c633f85299bf1d14cc1f255/Kinetics-of-Sulforaphane-Supplementation-in-an-Immortalizedhuman-Keratinocyte-HaCaT-Cell-Line-Exposed-to-UVB-Irradiation.pdf&source=gmail&ust=1579108247883000&usg=AFQjCNHNc0GQroyBWyLfIwpgL5npJNC-ag”>Kinetics of Sulforaphane Supplementation in an Immortalizedhuman Keratinocyte (HaCaT) Cell Line Exposed to UVB Irradiation
  1585. Sulforaphane Exhibits Cytotoxic Effects against Primary Effusion Lymphoma Cells by Suppressing p38MAPK and AKT Phosphorylation
  1586. Sulforaphane Prevents Hepatic Insulin Resistance by Blocking Serine Palmitoyltransferase 3-Mediated Ceramide Biosynthesis
  1587. The Effect of Sulforaphane on the Activity and Mineralization of Osteoblasts under Oxidative Stress
  1588. Inhibition of miR30a-3p by Sulforaphane enhances gap junction intercellular communication in pancreatic cancer
  1589. Reduction of the sulfoxide in glucoraphanin and Sulforaphane by E. coli VL11 and BL21 (DE3).
  1590. Sulforaphane_Augments_Glutathione_and_Influences_Brain_Metabolites_in_Human_Subjects_A_Clinical_Pilot_Study/links/5c7d95bf92851c695054c2d5/Sulforaphane-Augments-Glutathione-and-Influences-Brain-Metabolites-in-Human-Subjects-A-Clinical-Pilot-Study.pdf” target=”_blank” rel=”noopener” data-saferedirecturl=”https://www.google.com/url?hl=en&q=https://www.researchgate.net/profile/Jed_Fahey/publication/324582020_Sulforaphane_Augments_Glutathione_and_Influences_Brain_Metabolites_in_Human_Subjects_A_Clinical_Pilot_Study/links/5c7d95bf92851c695054c2d5/Sulforaphane-Augments-Glutathione-and-Influences-Brain-Metabolites-in-Human-Subjects-A-Clinical-Pilot-Study.pdf&source=gmail&ust=1579108247884000&usg=AFQjCNFC3y3lBJ1B8oHEbGdNEsRk8WTKXg”>Sulforaphane Augments Glutathione and Influences Brain Metabolites in Human Subjects: A Clinical Pilot Study
  1591. Effect of Sulforaphane on Bladder Compliance in a Rat Model of Partial Bladder Outlet Obstruction
  1592. Nrf2 activation via Keap1 deletion or Sulforaphane treatment reduces Ova-induced sinonasal inflammation.
  1593. Progesterone, Lipoic Acid, and Sulforaphane as Promising Antioxidants for Retinal Diseases: A Review
  1594. Melatonin treatment affects the glucoraphanin-Sulforaphane system in postharvest fresh-cut broccoli (Brassica oleracea L.)
  1595. Broccoli sprouts produce abdominal antinociception but not spasmolytic effects like its bioactive metabolite Sulforaphane
  1596. C35 ASTHMA AND ALLERGY CELLULAR INVESTIGATIONS: Sulforaphane Abrogates Steroid Insensitivity In Cigarette Smoke-Induced Airway Inflammation Through …
  1597. Sulforaphane suppresses the growth of triple-negative breast cancer stem cells in vitro and in vivo
  1598. Sulforaphane/links/57cdc0c708ae057987aaba9b/Nrf2-mediated-antioxidant-and-detoxifying-enzyme-induction-by-a-combination-of-curcumin-and-Sulforaphane.pdf” target=”_blank” rel=”noopener” data-saferedirecturl=”https://www.google.com/url?hl=en&q=https://www.researchgate.net/profile/Francisco_Fuentes/publication/307632154_Nrf2-mediated_antioxidant_and_detoxifying_enzyme_induction_by_a_combination_of_curcumin_and_Sulforaphane/links/57cdc0c708ae057987aaba9b/Nrf2-mediated-antioxidant-and-detoxifying-enzyme-induction-by-a-combination-of-curcumin-and-Sulforaphane.pdf&source=gmail&ust=1579108247884000&usg=AFQjCNG__HxMz64PhykykqyiWJJv9Jb9QQ”>Nrf2-mediated antioxidant and detoxifying enzyme induction by a combination of curcumin and Sulforaphane
  1599. Sulforaphane-suppressed-lps-pam3csk4-mediated/351/00002953″ target=”_blank” rel=”noopener” data-saferedirecturl=”https://www.google.com/url?hl=en&q=https://insights.ovid.com/chest/chst/2016/04/001/Sulforaphane-suppressed-lps-pam3csk4-mediated/351/00002953&source=gmail&ust=1579108247884000&usg=AFQjCNH8g_D4zdEVKCaEp99IPTE6LWD9BA”>Sulforaphane Suppressed LPS and Pam3CSK4 Mediated Inflammation in COPD Through MyD88-Dependent Toll-Like Receptors Pathway
  1600. Inhibition effects of Sulforaphane-induced autophagy flux to cell proliferation on ex vivo human capsular bags
  1601. Sulforaphane promotes chlamydial infection by suppressing mitochondrial protein oxidation and activation of complement C3
  1602. Sulforaphane Cannot Protect Human Fibroblasts From Repeated, Short and Sublethal Treatments with Hydrogen Peroxide
  1603. Sulforaphane‐induced metabolomic responses with epigenetic changes in estrogen receptor positive breast cancer cells
  1604. Sulforaphane‑induced epigenetic regulation of Nrf2 expression by DNA methyltransferase in human Caco‑2 cells
  1605. Formation of Sulforaphane and Iberin Products from Thai Cabbage Fermented by Myrosinase-Positive Bacteria
  1606. Erratum to: The role of Sulforaphane in cancer chemoprevention and health benefits: a mini-review
  1607. Sulforaphane Rescues Ethanol-Suppressed Angiogenesis through Oxidative and Endoplasmic Reticulum Stress in Chick Embryos
  1608. A MULTI-MODAL APPROACH TO Sulforaphane-MEDIATED CHEMO-PREVENTION USING THE EPIGENETIC NETWORK
  1609. NMR study on the stabilization and chiral discrimination of Sulforaphane enantiomers and analogues by cyclodextrins
  1610. Various modes of action of dietary phytochemicals, Sulforaphane and phenethyl isothiocyanate, on pathogenic bacteria
  1611. Sulforaphane, a naturally occurring isothiocyanate, exhibits anti-inflammatory effects by targeting GSK3β/Nrf-2 and NF-κB pathways in T cells
  1612. Sulforaphane_against_Multiorgan_Toxicity_in_Rats_An_In-vivo_and_In-vitro_Review_Study/links/5b9d165c45851574f7cd8edf/Protective-Role-of-Sulforaphane-against-Multiorgan-Toxicity-in-Rats-An-In-vivo-and-In-vitro-Review-Study.pdf” target=”_blank” rel=”noopener” data-saferedirecturl=”https://www.google.com/url?hl=en&q=https://www.researchgate.net/profile/Drsthanga_Pandiyan/publication/327668153_Protective_Role_of_Sulforaphane_against_Multiorgan_Toxicity_in_Rats_An_In-vivo_and_In-vitro_Review_Study/links/5b9d165c45851574f7cd8edf/Protective-Role-of-Sulforaphane-against-Multiorgan-Toxicity-in-Rats-An-In-vivo-and-In-vitro-Review-Study.pdf&source=gmail&ust=1579108247884000&usg=AFQjCNFlsFgpSG3b2OL-IgKwrhgguk3XNA”>Protective Role of Sulforaphane against Multiorgan Toxicity in Rats: An In-vivo and In-vitro Review Study
  1613. The Effect of Sulforaphane on Glyoxalase I Expression and Activity in Peripheral Blood Mononuclear Cells
  1614. Influence of Sulforaphane Preconditioning of Colon Cancer Cells on the DNA Adducts Induced by the Anticancer Prodrug PR104A
  1615. Extraction of Sulforaphane From Broccoli Seeds, its determination by Gas Chromatography/Mass Spectroscopy and its interaction with HDAC
  1616. Sulforaphane alleviates cadmium-induced toxicity in human mesenchymal stem cells through POR and TNFSF10 genes expression
  1617. ANTI-INFLAMMATORY AND ANTI-GRANULOMA ACTIVITY OF Sulforaphane, A NATURALLY OCCURRING ISOTHIOCYANATE FROM BROCCOLI …
  1618. HO-1 mediates the anti-inflammatory actions of Sulforaphane in monocytes stimulated with a mycoplasmal lipopeptide
  1619. Sulforaphane-Loaded Ultradeformable Vesicles as A Potential Natural Nanomedicine for the Treatment of Skin Cancer Diseases
  1620. The roles of microRNAs in the anti-cancer effects of Sulforaphane from cruciferous vegetables
  1621. A Novel Sulforaphane-Regulated Gene Network in Suppression of Breast Cancer-Induced Osteolytic Bone Resorption
  1622. Sulforaphane Induces miR135b-5p and Its Target Gene, RASAL2, thereby Inhibiting the Progression of Pancreatic Cancer
  1623. Dietary Sulforaphane supplementation induces Nrf2, attenuating hypoxia-induced vascular smooth muscle cell proliferation and remodelling following carotid artery …
  1624. Sulforaphane Modulates Metastasis Related Gene Expression and Cytokine Secretion in MDA-MB-231 Breast Cancer Cells.
  1625. Sulforaphane Attenuates Radiation-Induced Skin Damage By Regulating the Effects of Anti-Inflammation and Anti-Oxidation
  1626. Sulforaphane inhibits epithelial–mesenchymal transition by activating extracellular signal-regulated kinase 5 in lung cancer cells
  1627. The dietary isothiocyanate Sulforaphane reduces peri-infarct constriction frequency in mouse focal cerebral ischaemia via Nrf2-independent mechanisms
  1628. GW27-e0682 Sulforaphane alleviates myocardial ischemia/reperfusion injury by up-regulation of autophagy via AMPK/mTOR pathway
  1629. Sulforaphane administration alleviates diffuse axonal injury (DAI) via regulation signaling pathway of NRF2 and HO‐1
  1630. Synergistic anticancer effect of Sulforaphane and cisplatin on sirtuins-mediated epithelial-to-mesenchymal signaling in triple negative breast cancer
  1631. 7 Dietary Sulforaphane reduces peri-infarct constriction frequency in mouse brain following focal cerebral ischaemia via a Nrf2-independent mechanism
  1632. Effects of the isothiocyanate Sulforaphane on TGF‐β1‐induced rat cardiac fibroblast activation and extracellular matrix interactions
  1633. Therapeutic Paradigm Underscoring Glucosinolate Sulforaphane in Chemo-and Radiosensitization of Cancer: Preclinical and Clinical Perspective
  1634. Prospective Evaluation of the Lymph Node Proteome in Dogs with Multicentric Lymphoma Supplemented with Sulforaphane
  1635. Effects of fluid shear stress on the anti-inflammatory actions of Sulforaphane in human coronary artery endothelial cells
  1636. Combinatorial Withaferin A and Sulforaphane and Their Potential Roles in Breast Cancer Prevention and Therapy
  1637. Astrocyte redox dysregulation causes prefrontal hypoactivity: Sulforaphane treats non-ictal pathophysiology in ALDH7A1-mediated epilepsy
  1638. Lycopene, Sulforaphane, quercetin, and curcumin applied together show improved antiproliferative potential in colon cancer cells in vitro
  1639. A Functional Food Bar Rich in Sulforaphane to Aid Regulation of Blood Glucose Levels Among T2D
  1640. In Vitro Evaluation of Sulforaphane and a Natural Analog as Potent Inducers of 5-Fluorouracil Anticancer Activity
  1641. EFFECTS OF PROANTHOCYANIDINS IN COMBINATION WITH RESVERATROL AND Sulforaphane RESPECTIVELY ON HUMAN BREAST CANCER CELLS
  1642. Sulforaphane as a potential nutritional intervention to reduce neuroinflammation associated with aging and sickness behavior
  1643. Mild heat combined with lactic acid fermentation: a novel approach for enhancing Sulforaphane yield in broccoli puree
  1644. Sulforaphane potentially attenuates arsenic-induced nephrotoxicity via the PI3K/Akt/Nrf2 pathway in albino Wistar rats
  1645. P2008 Lipopolysaccharide-induced gene expression of CD14 in TRIF pathway is epigenetically regulated by Sulforaphane in porcine pulmonary alveolar …
  1646. Sulforaphane Regulation of LncRNA in a Transplacental Nrf2 Knockout Mouse Model Exposed to Dibenzo [def, p] chrysene
  1647. Abstract TP559: Sulforaphane Confers Neuroprotection Against Neuronal Loss, White Matter Injury and BBB Damage Following Experimental Vascular Cognitive …
  1648. Sulforaphane Protect Against Cadmium-Induced Oxidative Damage in mouse Leydigs Cells by Activating Nrf2/ARE Signaling Pathway
  1649. Sulforaphane Modulates Cell Migration and Expression of β-Catenin and Epithelial Mesenchymal Transition Markers in Breast Cancer Cells
  1650. Sulforaphane attenuates acute lung injury by inhibiting oxidative stress via Nrf2/HO-1 pathway in a rat sepsis model
  1651. Sulforaphane-Conjugated Carbon Dots: A Versatile Nanosystem for Targeted Imaging and Inhibition of EGFR-Overexpressing Cancer Cells
  1652. Effect of Sulforaphane on spatial learning and memory ability and β-amyloid protein level in hippocampus from early lead-exposed mice
  1653. D, L-Sulforaphane N-Acetyl-L-cysteine induces apoptosis by upregulating Bak and downregulating Bcl-2 in human prostate cancer cells
  1654. Sulforaphane Bioavailability and Chemopreventive Activity in Men Presenting for Biopsy of the Prostate Gland: A Randomized Controlled Trial
  1655. Enhanced production of Sulforaphane by exogenous glucoraphanin hydrolysis catalyzed by myrosinase extracted from Chinese flowering cabbage (Brassica …
  1656. GW26-e4479 Nrf2 Is Crucially Required for Sulforaphane to Prevent High Fat Diet/Low Dose STZ Induced Diabetic Cardiomyopathy
  1657. High levels of EGFR prevent Sulforaphane-induced reactive oxygen species–mediated apoptosis in non–small-cell lung cancer cells
  1658. Melatonin-Sulforaphane hybrid ITH12674 attenuates glial response in vivo by blocking LPS binding to MD2 and receptor oligomerization
  1659. Separation and purification of Sulforaphane (1-isothiocyanato-4-(methylsulfinyl) butane) from broccoli seeds by consecutive steps of adsorption-desorption-bleaching
  1660. Sulforaphane enhances the anti-cancer efficacy of anti-androgens in prostate cancer cells (LNCaP and C4-2B) by increasing androgen receptor (AR) degradation
  1661. Effects of Sulforaphane on TNF-α-induced proinflammatory cytokine production and reactive oxygen species generation in mouse brain endothelial cells
  1662. The potential use of l-Sulforaphane for the treatment of chronic inflammatory diseases: A review of the clinical evidence
  1663. The Effect of a Sulforaphane and Maitake Mushroom Extract Combination on the Expression of NAD (P) H: Quinone Oxidoreductase 1 (NQO1) and Glutathione S …
  1664. Co-Treatment with Sulforaphane and Nano-Metformin Molecules Accelerates Apoptosis in HER2+ Breast Cancer Cells by Inhibiting Key Molecules
  1665. Sulforaphane inhibits upregulation of the eIF4F translation initiation complex in human colorectal cancer via the PI3K/AKT/mTOR/4E-BP1 signaling pathway
  1666. Anti-inflammatory and anti-oxidant effects of combination between Sulforaphane and acetaminophen in LPS-stimulated RAW 264.7 macrophage cells
  1667. Sulforaphane: Its “Coming of Age” as a Clinically Relevant Nutraceutical in the Prevention and Treatment of Chronic Disease
  1668. … accumulation in nucleus pulposus cells impairs mitochondrial function and induces intervertebral disc degeneration and therapeutic effects of Sulforaphane
  1669. Abstract P158: Sulforaphane Rich Broccoli Powder Attenuates the Augmented Angiotensin II Induced Renal Inflammation and Injury in GSTM1 Deficient Mice
  1670. Comparative transcriptome analyses of genes involved in Sulforaphane metabolism at different treatment in Chinese kale using full-length transcriptome …
  1671. The Natural Product Sulforaphane Inhibits Breast Cancer Stem Cell Targets in Triple Negative and Trastuzumab-resistant Breast Cancers.
  1672. Methyl jasmonate, salicylic acid and abscisic acid enhance the accumulation of glucosinolates and Sulforaphane in radish (Raphanus sativus L.) taproot
  1673. Microwave pretreatment enhances the formation of cabbage Sulforaphane and its bioaccessibility as shown by a novel dynamic soft rat stomach model
  1674. B56 SCAR WARS: INSIGHTS INTO MECHANISMS AND TREATMENTS OF PULMONARY FIBROSIS: Efficacy Of Sulforaphane And Metformin On Tg [Beta]-[Beta] …
  1675. Sulforaphane Impacts Invasion Capacity and Proliferation of Triple Negative Breast Cancer Cells Grown in the Presence of Tumor-associated Macrophages (P05-003 …
  1676. Acetazolamide Potentiates the Anti-Tumor Efficacy of Sulforaphane and HDAC Inhibitor, MS-275, on Bronchial Carcinoids and Neuroblastoma
  1677. Sulforaphane alleviates retinal ganglion cell death and inflammation by suppressing NLRP3 inflammasome activation in a rat model of retinal ischemia/reperfusion …
  1678. Sulforaphane PROTECTS AGAINST ETHANOL-INDUCED APOPTOSIS IN NEURAL CREST CELLS AND ZEBRAFISH EMBRYOS THROUGH EPIGENETICALLY …
  1679. Sulforaphane inhibits formation of eIF4F complex in human pancreatic cancer via mTOR/4E-BP1 signaling pathway: a strategy for chemoprevention?
  1680. C64 HAVING A BLAST WITH FIBROBLASTS: Effect Of In-Vitro Combination Treatment With Curcumin, Aspirin, And Sulforaphane On Idiopathic Pulmonary Fibrosis …
  1681. 613-P: Preventive Effect of Sulforaphane on Type 2 Diabetes-Induced Diabetic Cardiomyopathy via AMPK-Mediated Activation of Glucose/Lipid Metabolism and Nrf2 …
  1682. Effect of Sulforaphane on cadmium-induced alterations of Nrf2, HO-1, γ-GCS and Gpx-1 mRNA and protein expression in kidneys of rats
  1683. Discovery of a crystalline Sulforaphane analog with good solid-state stability and engagement of the Nrf2 pathway in vitro and in vivo
  1684. Sulforaphane (SFN) And Bardoxolone (CDDO)–Induced Inhibition Of Aflatoxinb1–Mediated Genotoxicity In Human Lymphocytes: Role Of Gstm1, Gst1a1 And Nrf2 …
  1685. Protective effects of Sulforaphane on type 2 diabetes-induced cardiomyopathy via AMPK-mediated activation of lipid metabolic pathways and NRF2 function
  1686. Sulforaphane Protects Against Subarachnoid Hemorrhage and Alters the Expression of Inflammatory and Extracellular Matrix Remodeling Genes in a Mouse Model of …
  1687. 516-P: Preventive Effect of Sulforaphane on Type 2 Diabetes-Induced Diabetic Nephropathy via AMPK-Mediated Activation of Glucose/Lipid Metabolism and Nrf2 …
  1688. Sulforaphane protects against ethanol-induced apoptosis in neural crest cells through restoring epithelial-mesenchymal transition by epigenetically modulating the …
  1689. Targets and mechanisms of Sulforaphane derivatives obtained from cruciferous plants with special focus on breast cancer–contradictory effects and future …
  1690. 470-P: Combined Use of Sulforaphane and Zinc Provides a Better Protection against Diabetic Cardiomyopathy than Either One Alone in Type 1 Diabetic OVE26 Mice
  1691. … miR-221 and miR-181c regulation of liver tumor growth and metastasis in mouse progeny from Dibenzo [def, p] chrysene dosed mothers fed a Sulforaphane diet
  1692. The antitumor effect of Sulforaphane on Ehrlich solid mass tumor is associated with a reduction in the expression of plectin protein and oxidative stress
  1693. GW27-e0514 Metallothionein as a Nrf2 Downstream Gene Plays an Essential Role in Sulforaphane Protection Against Diabetes-induced Cardiac Remodeling and …
  1694. … Role of Nrf2 in UVA-Mediated MMP-1 Via MAPK/AP-1 Signaling in Keratinocyte HaCaT Cells and Mouse Skin: The Photoprotective Effects of Sulforaphane
  1695. Sulforaphane_in_lipid_based_self-microemulsifying_formulation/links/5db21b96299bf111d4c11d48/Development-and-validation-of-a-HPLC-UV-method-for-the-simultaneous-detection-and-quantification-of-paclitaxel-and-Sulforaphane-in-lipid-based-self-microemulsifying-formulation.pdf” target=”_blank” rel=”noopener” data-saferedirecturl=”https://www.google.com/url?hl=en&q=https://www.researchgate.net/profile/Mohammad_Kamal14/publication/336776284_Development_and_validation_of_a_HPLC-UV_method_for_the_simultaneous_detection_and_quantification_of_paclitaxel_and_Sulforaphane_in_lipid_based_self-microemulsifying_formulation/links/5db21b96299bf111d4c11d48/Development-and-validation-of-a-HPLC-UV-method-for-the-simultaneous-detection-and-quantification-of-paclitaxel-and-Sulforaphane-in-lipid-based-self-microemulsifying-formulation.pdf&source=gmail&ust=1579108247886000&usg=AFQjCNFrbtpfjsMWFBLgkPcbGuf-WBg2BA”>Development and validation of a HPLC-UV method for the simultaneous detection and quantification of paclitaxel and Sulforaphane in lipid based self …
  1696. … Consisting Superparamagnetic Fe3O4-loaded poly-γ-glutamic Acid and Chitosan Oligosaccharide for Targeted Delivery of Sulforaphane from Broccoli Seed Extracts
  1697. In the triple-negative breast cancer MDA-MB-231 cell line, Sulforaphane enhances the intracellular accumulation and anticancer action of doxorubicin encapsulated in …
  1698. … IN THE BIOLOGY OF BPD AND OTHER CONGENITAL PEDIATRIC LUNG DISEASES: Effect Of Prenatal Antioxidant Sulforaphane On Developing Lung Disorder In …
  1699. Development of a new class of Sulforaphane-enabled self-emulsifying drug delivery systems (SFN-SEDDS) by high throughput screening: A case study with curcumin
  1700. Sulforaphane metabolites inhibit migration and invasion via microtubule-mediated Claudins dysfunction or inhibition of autolysosome formation in human non …
  1701. Transcriptome and DNA methylation changes modulated by Sulforaphane induce cell cycle arrest, apoptosis, DNA damage, and suppression of proliferation in human …
  1702. … (meglumine diatrizoate) aggravates renal inflammation, oxidative DNA damage and apoptosis in diabetic rats which is restored by Sulforaphane through Nrf2/HO-1 …
  1703. Sulforaphane treatment reverses corticosteroid resistance in a mixed granulocytic mouse model of asthma by upregulation of antioxidants and attenuation of Th17 …
  1704. Vasodilator effects of Sulforaphane in cerebral circulation: A critical role of endogenously produced hydrogen sulfide and arteriolar smooth muscle KATP and BK …
  1705. The Prevention of a High Dose of Vitamin D or Its Combination with Sulforaphane on Intestinal Inflammation and Tumorigenesis in Apc1638N Mice Fed a High‐Fat …
  1706. Effect of Salinity Stress on Enzymes’ Activity, Ions Concentration, Oxidative Stress Parameters, Biochemical Traits, Content of Sulforaphane, and CYP79F1 Gene …
  1707. Investigating the Mechanisms of Toxicity of Benzene and its Metabolite Benzoquinone and the Role of Sulforaphane as a Potential Protective Agent in CD-1 Mouse …
  1708. Sulforaphane Attenuates H2O2-induced Oxidant Stress in Human Trabecular Meshwork Cells (HTMCs) via the Phosphatidylinositol 3-Kinase (PI3K)/Serine …
  1709. … /Zero-Interaction (DE/ZI) Method for Quantifying Small Molecule Interactions: Nrf2/Antioxidant Response Element Pathway Activation by Sulforaphane and a Non …
  1710. … changes in prostate of men on active surveillance after a 12-mo glucoraphanin-rich broccoli intervention—results from the Effect of Sulforaphane on prostate CAncer …
  1711. Corrigendum to’Autophagic cell death and premature senescence: New mechanism of 5-fluorouracil and Sulforaphane synergistic anticancer effect in MDA-MB-231 …
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