Chronic social stress induces p16-mediated senescent cell accumulation in mice.

Lyons, Carey E; Pallais, Jean Pierre; McGonigle, Seth; Mansk, Rachel P; Collinge, Charles W; Yousefzadeh, Matthew J; Baker, Darren J; Schrank, Patricia R et al. · Nat Aging · 2025

basic_science · Level V

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Abstract

Life stress can shorten lifespan and increase risk for aging-related diseases, but the biology underlying this phenomenon remains unclear. Here we assessed the effect of chronic stress on cellular senescence-a hallmark of aging. Exposure to restraint stress, a psychological non-social stress model, increased p21<sup>Cip1</sup> exclusively in the brains of male, but not female mice, and in a p16<sup>Ink4a</sup>-independent manner. Conversely, exposure to chronic subordination stress (only males were tested) increased key senescent cell markers in peripheral blood mononuclear cells, adipose tissue and brain, in a p16<sup>Ink4a</sup>-dependent manner. p16<sup>Ink4a</sup>-positive cells in the brain of chronic subordination stress-exposed mice were primarily hippocampal and cortical neurons with evidence of DNA damage that could be reduced by p16<sup>Ink4a</sup> cell clearance. Clearance of p16<sup>Ink4a</sup>-positive cells was not sufficient to ameliorate the adverse effects of social stress on measured metrics of healthspan. Overall, our findings indicate that social stress induces an organ-specific and p16<sup>Ink4a</sup>-dependent accumulation of senescent cells, illuminating a fundamental way by which the social environment can contribute to aging.

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