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416 results on '"Sirtuins physiology"'

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1. Pathological mechanisms of kidney disease in ageing.

2. Sirtuins in kidney health and disease.

3. Caloric restriction, Sirtuins, and cardiovascular diseases.

4. SIRT7: a novel molecular target for personalized cancer treatment?

5. SIRT7: the seventh key to unlocking the mystery of aging.

6. The Role of Sirtuin-1 (SIRT1) in the Physiology and Pathophysiology of the Human Placenta.

7. Roles of sirtuin family members in chronic obstructive pulmonary disease.

8. Redox Homeostasis in Cardiovascular Disease: The Role of Mitochondrial Sirtuins.

9. Roles of SIRT6 in kidney disease: a novel therapeutic target.

10. The protective effects of Agomelatine against Aβ1-42 oligomers-induced cellular senescence mediated by SIRT6 and Agomelatine's potential in AD treatment.

11. Sirtuins as Metabolic Regulators of Immune Cells Phenotype and Function.

12. Gastrodin Regulates the Notch Signaling Pathway and Sirt3 in Activated Microglia in Cerebral Hypoxic-Ischemia Neonatal Rats and in Activated BV-2 Microglia.

13. SIRT7 Acts as a Guardian of Cellular Integrity by Controlling Nucleolar and Extra-Nucleolar Functions.

14. Sodium valproate increases activity of the sirtuin pathway resulting in beneficial effects for spinocerebellar ataxia-3 in vivo.

15. Inter-Individual Variation in Postprandial Glycemic Responses in Women Co-Ingesting Green Leafy Vegetables with a Carbohydrate Meal: Interactions with the Sirtuin System.

16. SIRT3 ameliorates osteoarthritis via regulating chondrocyte autophagy and apoptosis through the PI3K/Akt/mTOR pathway.

17. Is nuclear sirtuin SIRT6 a master regulator of immune function?

18. LncRNA Blnc1 mediates the permeability and inflammatory response of cerebral hemorrhage by regulating the PPAR-γ/SIRT6/FoxO3 pathway.

19. Sirtuins as Important Factors in Pathological States and the Role of Their Molecular Activity Modulators.

20. MiR-33a inhibits the adipogenic differentiation of ovine adipose-derived stromal vascular fraction cells by targeting SIRT6.

21. Research progress of sirtuins in renal and cardiovascular diseases.

22. Tauroursodeoxycholic acid attenuates neuronal apoptosis via the TGR5/ SIRT3 pathway after subarachnoid hemorrhage in rats.

23. Sirtuins family as a target in endothelial cell dysfunction: implications for vascular ageing.

24. Mitochondrial Sirtuins in Skin and Skin Cancers.

25. SIRT7: an influence factor in healthy aging and the development of age-dependent myeloid stem-cell disorders.

26. Sirt6 in pro-opiomelanocortin neurons controls energy metabolism by modulating leptin signaling.

27. Synergy between SIRT1 and SIRT6 helps recognize DNA breaks and potentiates the DNA damage response and repair in humans and mice.

28. Small-molecule activating SIRT6 elicits therapeutic effects and synergistically promotes anti-tumor activity of vitamin D 3 in colorectal cancer.

29. Circadian Clock and Sirtuins in Diabetic Lung: A Mechanistic Perspective.

30. Sirtuin SirD is involved in α-amylase activity and citric acid production in Aspergillus luchuensis mut. kawachii during a solid-state fermentation process.

31. SIRT6 is a DNA double-strand break sensor.

32. Molecular docking and mechanisms of fusaric acid induced mitochondrial sirtuin aberrations in glycolytically and oxidatively poised human hepatocellular carcinoma (HepG2) cells.

33. Causal roles of mitochondrial dynamics in longevity and healthy aging.

34. Sirtuin 5 Regulates Proximal Tubule Fatty Acid Oxidation to Protect against AKI.

35. The activation of cardiac dSir2 -related pathways mediates physical exercise resistance to heart aging in old Drosophila .

36. Updates on the epigenetic roles of sirtuins.

37. Sirtuin-mediated deacetylation of hnRNP A1 suppresses glycolysis and growth in hepatocellular carcinoma.

38. Endothelial SIRT6 Is Vital to Prevent Hypertension and Associated Cardiorenal Injury Through Targeting Nkx3.2-GATA5 Signaling.

39. Role of Nampt-Sirt6 Axis in Renal Proximal Tubules in Extracellular Matrix Deposition in Diabetic Nephropathy.

40. Hepatocyte-specific Sirt6 deficiency impairs ketogenesis.

41. [The sirtuin family of proteins: the role in the aging processes and regulation of cell metabolism.]

42. [Role of deacetylase sirtuins in sepsis: beneficial or harmful?]

43. SIRT7 promotes thyroid tumorigenesis through phosphorylation and activation of Akt and p70S6K1 via DBC1/SIRT1 axis.

44. Chemical and Physiological Features of Mitochondrial Acylation.

45. NAD + and sirtuins in retinal degenerative diseases: A look at future therapies.

46. Phosphodiesterase 4 inhibitor activates AMPK-SIRT6 pathway to prevent aging-related adipose deposition induced by metabolic disorder.

47. Mechanisms of the anti-aging and prolongevity effects of caloric restriction: evidence from studies of genetically modified animals.

48. Sirtuin activators and inhibitors: Promises, achievements, and challenges.

49. Evidence for excessive osteoclast activation in SIRT6 null mice.

50. Ablation of Sirtuin5 in the postnatal mouse heart results in protein succinylation and normal survival in response to chronic pressure overload.

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