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Intermittent clearance of p21-highly-expressing cells extends lifespan and confers sustained benefits to health and physical function

  • Binsheng Wang
  • , Lichao Wang
  • , Nathan S. Gasek
  • , Chia Ling Kuo
  • , Jia Nie
  • , Taewan Kim
  • , Pengyi Yan
  • , Junyu Zhu
  • , Blake L. Torrance
  • , Yueying Zhou
  • , Lisa C. Flores
  • , Colton Allen
  • , Allison M. Andrade
  • , Chun Guo
  • , Rachel L. Cohn
  • , Evan R. Jellison
  • , Jenna M. Bartley
  • , George A. Kuchel
  • , Sheng Li
  • , Tamar Pirtskhalava
  • Tamar Tchkonia, Sumit Yadav, Laura Haynes, James L. Kirkland, Yuji Ikeno, Ming Xu

Producción científica: Articlerevisión exhaustiva

Resumen

A key challenge in aging research is extending lifespan in tandem with slowing down functional decline so that life with good health (healthspan) can be extended. Here, we show that monthly clearance, starting from 20 months, of a small number of cells that highly express p21Cip1 (p21high) improves cardiac and metabolic function and extends both median and maximum lifespans in mice. Importantly, by assessing the health and physical function of these mice monthly until death, we show that clearance of p21high cells improves physical function at all remaining stages of life, suggesting healthspan extension. Mechanistically, p21high cells encompass several cell types with a relatively conserved proinflammatory signature. Clearance of p21high cells reduces inflammation and alleviates age-related transcriptomic signatures of various tissues. These findings demonstrate the feasibility of healthspan extension in mice and indicate p21high cells as a therapeutic target for healthy aging.

Idioma originalEnglish (US)
Páginas (desde-hasta)1795-1805.e6
PublicaciónCell Metabolism
Volumen36
N.º8
DOI
EstadoPublished - ago 6 2024
Publicado de forma externa

ASJC Scopus subject areas

  • Physiology
  • Molecular Biology
  • Cell Biology

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