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1. Cellular Senescence in Brain Aging

2. Rapha Myr®, a Blend of Sulforaphane and Myrosinase, Exerts Antitumor and Anoikis-Sensitizing Effects on Human Astrocytoma Cells Modulating Sirtuins and DNA Methylation

3. TMA, A Forgotten Uremic Toxin, but Not TMAO, Is Involved in Cardiovascular Pathology

4. Slowing Down Ageing: The Role of Nutrients and Microbiota in Modulation of the Epigenome

5. The Role of Curcumin in the Modulation of Ageing

6. The role of nibrin in doxorubicin-induced apoptosis and cell senescence in Nijmegen Breakage Syndrome patients lymphocytes.

7. Combination of dasatinib and quercetin improves cognitive abilities in aged male Wistar rats, alleviates inflammation and changes hippocampal synaptic plasticity and histone H3 methylation profile

8. Trimethylamine But Not Trimethylamine Oxide Increases With Age in Rat Plasma and Affects Smooth Muscle Cells Viability

9. Curcumin induces multiple signaling pathways leading to vascular smooth muscle cell senescence

10. Cellular Senescence in Brain Aging

11. Rapha Myr

12. Rapha Myr(R), a Blend of Sulforaphane and Myrosinase, Exerts Antitumor and Anoikis-Sensitizing Effects on Human Astrocytoma Cells Modulating Sirtuins and DNA Methylation

13. IQGAP1-dysfunction leads to induction of senescence in human vascular smooth muscle cells

14. A common signature of cellular senescence; does it exist?

15. Sirtuins, a promising target in slowing down the ageing process

16. TMA, A Forgotten Uremic Toxin, but Not TMAO, Is Involved in Cardiovascular Pathology

17. Slowing Down Ageing: The Role of Nutrients and Microbiota in Modulation of the Epigenome

18. Curcumin elevates sirtuin level but does not postpone in vitro senescence of human cells building the vasculature

19. Curcumin induces oxidation-dependent cell cycle arrest mediated by SIRT7 inhibition of rDNA transcription in human aortic smooth muscle cells

20. Capsaicin-induced genotoxic stress does not promote apoptosis in A549 human lung and DU145 prostate cancer cells

21. Is DNA damage indispensable for stress-induced senescence?

22. A comparison of replicative senescence and doxorubicin-induced premature senescence of vascular smooth muscle cells isolated from human aorta

23. NOX4 downregulation leads to senescence of human vascular smooth muscle cells

24. Curcumin disrupts meiotic and mitotic divisions via spindle impairment and inhibition of CDK1 activity

25. The Promise of Slow Down Ageing May Come from Curcumin

26. Cdc42 protein acts upstream of IQGAP1 and regulates cytokinesis in mouse oocytes and embryos

27. Curcumin-treated cancer cells show mitotic disturbances leading to growth arrest and induction of senescence phenotype

28. Curcumin induces senescence of primary human cells building the vasculature in a DNA damage and ATM-independent manner

29. Curcumin induces cell death without oligonucleosomal DNA fragmentation in quiescent and proliferating human CD8+ cells

30. Curcumin induces caspase-3-dependent apoptotic pathway but inhibits DNA fragmentation factor 40/caspase-activated DNase endonuclease in human Jurkat cells

31. Nanodiamond-mediated impairment of nucleolar activity is accompanied by oxidative stress and DNMT2 upregulation in human cervical carcinoma cells

32. The role of nibrin in doxorubicin-induced apoptosis and cell senescence in Nijmegen Breakage Syndrome patients lymphocytes

33. Cellular senescence in ageing, age-related disease and longevity

34. DNA damage-independent apoptosis induced by curcumin in normal resting human T cells and leukaemic Jurkat cells

35. [Molecular and cellular mechanisms of curcumin action--beneficial effect on organism]

36. Effect of curcumin on the apoptosis of rodent and human nonproliferating and proliferating lymphoid cells

37. Effect of aging on UVC-induced apoptosis of rat splenocytes

38. Glutathione-independent mechanism of apoptosis inhibition by curcumin in rat thymocytes

39. Inhibition of proliferation and apoptosis of human and rat T lymphocytes by curcumin, a curry pigment

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