AI Article Synopsis

  • Researchers used advanced mass cytometry to study senescent cells, which are crucial in understanding aging, at a detailed level.
  • They identified specific types of senescent cells in bone tissue that show markers of aging and are linked to osteoblasts and osteocytes.
  • The study also demonstrated that certain therapies can effectively eliminate these senescent cells in older mice, highlighting potential targets for treatments to combat aging-related issues.

Article Abstract

Senescence drives organismal aging, yet the deep characterization of senescent cells in vivo remains incomplete. Here, we apply mass cytometry by time-of-flight using carefully validated antibodies to analyze senescent cells at single-cell resolution. We use multiple criteria to identify senescent mesenchymal cells that are growth-arrested and resistant to apoptosis. These p16 + Ki67-BCL-2+ cells are highly enriched for senescence-associated secretory phenotype and DNA damage markers, are strongly associated with age, and their percentages are increased in late osteoblasts/osteocytes and CD24 osteolineage cells. Moreover, both late osteoblasts/osteocytes and CD24 osteolineage cells are robustly cleared by genetic and pharmacologic senolytic therapies in aged mice. Following isolation, CD24+ skeletal cells exhibit growth arrest, senescence-associated β-galactosidase positivity, and impaired osteogenesis in vitro. These studies thus provide an approach using multiplexed protein profiling to define senescent mesenchymal cells in vivo and identify specific skeletal cell populations cleared by senolytics.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC10390564PMC
http://dx.doi.org/10.1038/s41467-023-40393-9DOI Listing

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