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3. Galactose-1-phosphate inhibits cytochrome c oxidase and causes mitochondrial dysfunction in classic galactosemia

4. Guidelines for minimal information on cellular senescence experimentation in vivo

5. Apoptotic stress causes mtDNA release during senescence and drives the SASP

8. Spatial mapping of cellular senescence: emerging challenges and opportunities

10. Author Correction: Apoptotic stress causes mtDNA release during senescence and drives the SASP

11. List of contributors

13. Characterization of cellular senescence in aging skeletal muscle

15. Senescent cells evade immune clearance via HLA-E-mediated NK and CD8+ T cell inhibition.

18. A new gene set identifies senescent cells and predicts senescence-associated pathways across tissues

19. Osteochondroprogenitor cells and neutrophils expressing p21 and senescence markers modulate fracture repair

24. Obesity-Induced Cellular Senescence Drives Anxiety and Impairs Neurogenesis

25. BMAL1 modulates senescence programming via AP-1

26. A Potent and Specific CD38 Inhibitor Ameliorates Age-Related Metabolic Dysfunction by Reversing Tissue NAD+ Decline

30. A chronic wound model to investigate skin cellular senescence

31. Local senolysis in aged mice only partially replicates the benefits of systemic senolysis

32. SenNet recommendations for detecting senescent cells in different tissues

34. Toll-like receptor 2 orchestrates a tumor suppressor response in non-small cell lung cancer

35. NIH SenNet Consortium: Mapping Senescent Cells in the Human Body to Understand Health and Disease

39. NIH SenNet Consortium: Mapping Senescent Cells in the Human Body to Understand Health and Disease

40. NIH SenNet Consortium to map senescent cells throughout the human lifespan to understand physiological health

41. Toll-like receptor 2 orchestrates a tumor suppressor response in non-small cell lung cancer

42. Cytoplasmic innate immune sensing by the caspase-4 non-canonical inflammasome promotes cellular senescence

43. Cellular senescence: all roads lead to mitochondria.

44. Inactivation of histone chaperone HIRA unmasks a link between normal embryonic development of melanoblasts and maintenance of adult melanocyte stem cells

45. Targeted clearance of p21 ‐ but not p16 ‐positive senescent cells prevents radiation‐induced osteoporosis and increased marrow adiposity

50. Autophagy

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