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Your search keyword '"Mendelsohn A"' showing total 230 results

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230 results on '"Mendelsohn A"'

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1. Antiaging Vaccines Targeting Senescent Cells

2. Stem Cell Rejuvenation by Restoration of Youthful Metabolic Compartmentalization

3. Response to Hypoxia in Cognitive Decline

4. Beneficial Gut Microbiome Remodeled During Intermittent Fasting in Humans

5. Supplementation with Brush Border Enzyme Alkaline Phosphatase Slows Aging

6. The Danger of Being Too Sympathetic: Norepinephrine in Alzheimer's Disease and Graying of Hair

7. Increased REST to Optimize Life Span?

9. Modulation of cGAS-STING Pathway by Nicotinamide Riboside in Alzheimer's Disease

10. Metabolic Reprogramming Rejuvenates Aged Myeloid Cells Restoring Cognition

13. Interacting NAD+ and Cell Senescence Pathways Complicate Antiaging Therapies

14. Rejuvenation Through Oxygen, More or Less

17. SUMO Wrestles with Mitophagy to Extend Lifespan

19. Contribution of Ferroptosis to Aging and Frailty

20. Eosinophils and White Fat: Protection from Worms and Inflammaging

21. Exercise Partially Rejuvenates Muscle Stem Cells

22. Finally, a Regimen to Extend Human Life Expectancy

23. Telomerase May Paradoxically Accelerate Aging of the DNA Methylome

24. ATP Synthase, a Target for Dementia and Aging?

25. Mesenchymal Stem Cells for Frailty?

34. Epigenetic Drift Is a Determinant of Mammalian Lifespan

35. Inflammation, Stem Cells, and the Aging Hypothalamus

36. The NAD+/PARP1/SIRT1 Axis in Aging

37. Rejuvenation by Partial Reprogramming of the Epigenome

38. Pharmaceutical Rejuvenation of Age-Associated Decline in Spatial Memory

39. Epigenetic Age Reversal by Cell-Extrinsic and Cell-Intrinsic Means

40. Interacting NAD

41. Regulation of S-Nitrosylation in Aging and Senescence

42. Uncoupling Mitochondrial Respiration for Diabesity

43. Rejuvenating Muscle Stem Cell Function: Restoring Quiescence and Overcoming Senescence

44. Cellular Senescence as the Key Intermediate in Tau-Mediated Neurodegeneration

45. Prevention of Senescence in Vasculature Through Quiescence

46. Mitochondrial-Derived Peptides Exacerbate Senescence

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