Jayne Lorna, Lavin-Peter Aurora, Roessler Julian, Tyshkovskiy Alexander, Antoszewski Mateusz, Ren Erika, Markovski Aleksandar, Sun Senmiao, Yao Hanqi, Sankaran Vijay G, Gladyshev Vadim N, Brooke Robert T, Horvath Steve, Griffith Eric C, Hrvatin Sinisa
Whitehead Institute for Biomedical Research and Department of Biology, Massachusetts Institute of Technology, Cambridge, MA, USA.
Department of Neurobiology, Harvard Medical School, Boston, MA, USA.
Nat Aging. 2025 Mar;5(3):437-449. doi: 10.1038/s43587-025-00830-4. Epub 2025 Mar 7.
Torpor and hibernation are extreme physiological adaptations of homeotherms associated with pro-longevity effects. Yet the underlying mechanisms of how torpor affects aging, and whether hypothermic and hypometabolic states can be induced to slow aging and increase healthspan, remain unknown. Here we demonstrate that the activity of a spatially defined neuronal population in the preoptic area, which has previously been identified as a torpor-regulating brain region, is sufficient to induce a torpor-like state (TLS) in mice. Prolonged induction of TLS slows epigenetic aging across multiple tissues and improves healthspan. We isolate the effects of decreased metabolic rate, long-term caloric restriction, and decreased core body temperature (T) on blood epigenetic aging and find that the decelerating effect of TLSs on aging is mediated by decreased T. Taken together, our findings provide novel mechanistic insight into the decelerating effects of torpor and hibernation on aging and support the growing body of evidence that T is an important mediator of the aging processes.
蛰伏和冬眠是恒温动物的极端生理适应,与延长寿命的效应相关。然而,蛰伏如何影响衰老的潜在机制,以及是否可以诱导低温和低代谢状态来延缓衰老并延长健康寿命,仍然未知。在这里,我们证明视前区中一个空间定义的神经元群体的活动,该区域先前已被确定为一个调节蛰伏的脑区,足以在小鼠中诱导出类似蛰伏的状态(TLS)。长期诱导TLS可减缓多个组织的表观遗传衰老并改善健康寿命。我们分离了代谢率降低、长期热量限制和核心体温(T)降低对血液表观遗传衰老的影响,发现TLS对衰老的减速作用是由T降低介导的。综上所述,我们的研究结果为蛰伏和冬眠对衰老的减速作用提供了新的机制见解,并支持越来越多的证据表明T是衰老过程的重要调节因子。