小鼠的类似冬眠状态减缓了血液表观遗传老化,延长了健康寿命。

IF 17 Q1 CELL BIOLOGY
Lorna Jayne, Aurora Lavin-Peter, Julian Roessler, Alexander Tyshkovskiy, Mateusz Antoszewski, Erika Ren, Aleksandar Markovski, Senmiao Sun, Hanqi Yao, Vijay G. Sankaran, Vadim N. Gladyshev, Robert T. Brooke, Steve Horvath, Eric C. Griffith, Sinisa Hrvatin
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引用次数: 0

摘要

冬眠和冬眠是恒温动物的极端生理适应,与长寿效应有关。然而,冬眠如何影响衰老的潜在机制,以及是否可以诱导低体温和低代谢状态来延缓衰老和增加健康寿命,仍然未知。在这里,我们证明了视前区(以前被确定为睡眠调节脑区域)中一个空间定义的神经元群的活动足以诱导小鼠的睡眠样状态(TLS)。长时间诱导TLS减缓了多个组织的表观遗传衰老,改善了健康寿命。我们分离了降低代谢率、长期热量限制和降低核心体温(Tb)对血液表观遗传衰老的影响,发现TLSs对衰老的减缓作用是通过降低Tb介导的。综上所述,我们的研究结果为休眠和冬眠对衰老的减缓作用提供了新的机制见解,并支持了越来越多的证据表明结核病是衰老过程的重要介质。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

A torpor-like state in mice slows blood epigenetic aging and prolongs healthspan

A torpor-like state in mice slows blood epigenetic aging and prolongs healthspan
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 (Tb) on blood epigenetic aging and find that the decelerating effect of TLSs on aging is mediated by decreased Tb. 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 Tb is an important mediator of the aging processes. Dissecting the effects of hypothermic and hypometabolic states on aging processes, the authors show that activation of neurons in the preoptic area induces a torpor-like state in mice that slows epigenetic aging and improves healthspan. These pro-longevity effects are mediated by reduced Tb, reinforcing evidence that Tb is a key mediator of aging processes.
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来源期刊
CiteScore
14.70
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