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1. Anti-Inflammatory Therapeutic Mechanisms of Isothiocyanates: Insights from Sulforaphane.

2. Sulforaphane protects intestinal epithelial cells against lipopolysaccharide-induced injury by activating the AMPK/SIRT1/PGC-1ɑ pathway

3. Sulforaphane elicts dual therapeutic effects on Renal Inflammatory Injury and crystal deposition in Calcium Oxalate Nephrocalcinosis

4. Novel plant microRNAs from broccoletti sprouts do not show cross-kingdom regulation of pancreatic cancer

5. 十字花科植物萝卜硫素生理功能 及其产品应用的研究进展.

6. Transcriptomics analysis of genes induced by melatonin related to glucosinolates synthesis in broccoli hairy roots

7. Next-generation multimodality of nutrigenomic cancer therapy: sulforaphane in combination with acetazolamide actively target bronchial carcinoid cancer in disabling the PI3K/Akt/mTOR survival pathway and inducing apoptosis

8. Sulforaphane prevents age-associated cardiac and muscular dysfunction through Nrf2 signaling

9. Unveiling the Nutritional Veil of Sulforaphane: With a Major Focus on Glucose Homeostasis Modulation.

10. Broccoli Consumption and Risk of Cancer: An Updated Systematic Review and Meta-Analysis of Observational Studies.

11. The Nrf2 induction prevents ferroptosis in Friedreich's Ataxia

12. Nrf2-regulated redox signaling in brain endothelial cells adapted to physiological oxygen levels: Consequences for sulforaphane mediated protection against hypoxia-reoxygenation

13. Effect of Drum-Drying Conditions on the Content of Bioactive Compounds of Broccoli Pulp

14. Sulforaphane promotes

15. Generation and characterization of keap1a- and keap1b-knockout zebrafish

16. Progerin accumulation in nucleus pulposus cells impairs mitochondrial function and induces intervertebral disc degeneration and therapeutic effects of sulforaphane

17. Nrf2 expression and function, but not MT expression, is indispensable for sulforaphane-mediated protection against intermittent hypoxia-induced cardiomyopathy in mice

18. Sulforaphane inhibits growth and blocks Wnt/β-catenin signaling of colorectal cancer cells

19. Comparative Study of Predominant Phytochemical Compounds and Proapoptotic Potential of Broccoli Sprouts and Florets

20. Sulforaphane suppresses oral cancer cell migration by regulating cathepsin S expression

21. Aging-related decline in the induction of Nrf2-regulated antioxidant genes in human bronchial epithelial cells

22. Anticancer properties of sulforaphane: current insights at the molecular level.

23. Sulforaphane reduces YAP/∆Np63α signaling to reduce cancer stem cell survival and tumor formation

24. Phytochemical-induced nucleolar stress results in the inhibition of breast cancer cell proliferation

25. Protective effects of sulforaphane on di-n-butylphthalate-induced testicular oxidative stress injury in male mice offsprings via activating Nrf2/ARE pathway

26. Intermittent treatment with farnesyltransferase inhibitor and sulforaphane improves cellular homeostasis in Hutchinson-Gilford progeria fibroblasts

27. Thioredoxin plays a key role in retinal neuropathy prior to endothelial damage in diabetic mice

28. CX3CR1-deficient microglia shows impaired signalling of the transcription factor NRF2: Implications in tauopathies

29. Sulforaphane Inhibits the Acquisition of Tobacco Smoke-Induced Lung Cancer Stem Cell-Like Properties

30. Sulforaphane exposure impairs contractility and mitochondrial function in three-dimensional engineered heart tissue

31. Sulforaphane Augments Glutathione and Influences Brain Metabolites in Human Subjects: A Clinical Pilot Study

32. Sulforaphane-Induced Cell Cycle Arrest and Senescence are accompanied by DNA Hypomethylation and Changes in microRNA Profile in Breast Cancer Cells

33. Sulforaphane Induced Apoptosis via Promotion of Mitochondrial Fusion and ERK1/2-Mediated 26S Proteasome Degradation of Novel Pro-survival Bim and Upregulation of Bax in Human Non-Small Cell Lung Cancer Cells

34. Sulforaphane inhibits proliferation and invasive activity of everolimus-resistant kidney cancer cells in vitro

35. Sulforaphane-induced apoptosis involves the type 1 IP3 receptor

36. Chemoprevention of oxidative stress-associated oral carcinogenesis by sulforaphane depends on NRF2 and the isothiocyanate moiety

37. Associations between cruciferous vegetable intake and selected biomarkers among women scheduled for breast biopsies

38. Sulforaphane inhibits thyroid cancer cell growth and invasiveness through the reactive oxygen species-dependent pathway

39. Efficacy and tolerability of sulforaphane in the therapeutic management of cancers: a systematic review of randomized controlled trials.

40. Sulforaphane induces apoptosis in rhabdomyosarcoma and restores TRAIL-sensitivity in the aggressive alveolar subtype leading to tumor elimination in mice

41. A Bibliometric Review of the Keap1/Nrf2 Pathway and its Related Antioxidant Compounds.

43. Effectiveness of Silymarin, Sulforaphane, Lycopene, Green Tea, Tryptophan, Glutathione, and Escin on Human Health: A Narrative Review.

44. Effect of Nrf2 activators on release of glutathione, cysteinylglycine and homocysteine by human U373 astroglial cells

45. Isothiocyanates suppress the invasion and metastasis of tumors by targeting FAK/MMP-9 activity

46. Sulforaphane inhibits cancer stem-like cell properties and cisplatin resistance through miR-214-mediated downregulation of c-MYC in non-small cell lung cancer

47. Protective effects of isothiocyanates on blood-CSF barrier disruption induced by oxidative stress

48. Physiological Effects of Green-Colored Food-Derived Bioactive Compounds on Cancer.

49. Monitoring Keap1–Nrf2 interactions in single live cells

50. Sulforaphane counteracts aggressiveness of pancreatic cancer driven by dysregulated Cx43-mediated gap junctional intercellular communication