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1. SGF29 nuclear condensates reinforce cellular aging

3. Nuclear lamina erosion-induced resurrection of endogenous retroviruses underlies neuronal aging

5. Rescue of premature aging defects in Cockayne syndrome stem cells by CRISPR/Cas9-mediated gene correction

6. Maintenance of Nucleolar Homeostasis by CBX4 Alleviates Senescence and Osteoarthritis

7. Aging Atlas: a multi-omics database for aging biology.

9. 4E-BP1 counteracts human mesenchymal stem cell senescence via maintaining mitochondrial homeostasis

11. SIRT3 consolidates heterochromatin and counteracts senescence

12. Resurrection of endogenous retroviruses during aging reinforces senescence

13. Correction to ‘SIRT3 consolidates heterochromatin and counteracts senescence’

14. Aging Atlas: a multi-omics database for aging biology

15. FTO stabilizes MIS12 and counteracts senescence

16. ALKBH1 deficiency leads to loss of homeostasis in human diploid somatic cells

17. ZKSCAN3 counteracts cellular senescence by stabilizing heterochromatin

18. Large-scale chromatin reorganization reactivates placenta-specific genes that drive cellular aging

19. Hyperthermia differentially affects specific human stem cells and their differentiated derivatives

20. Rescue of premature aging defects in Cockayne syndrome stem cells by CRISPR/Cas9-mediated gene correction

21. Maintenance of Nucleolar Homeostasis by CBX4 Alleviates Senescence and Osteoarthritis

22. A genome-wide CRISPR-based screen identifies KAT7 as a driver of cellular senescence

23. A genome-wide CRISPR-based screen identifies

24. Genome-wide R-loop Landscapes during Cell Differentiation and Reprogramming

25. Caloric Restriction Reprograms the Single-Cell Transcriptional Landscape of Rattus Norvegicus Aging.

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