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定时日常锻炼重塑小鼠的昼夜节律。

Timed daily exercise remodels circadian rhythms in mice.

机构信息

Faculty of Biology, Medicine and Health, The University of Manchester, Manchester, UK.

School of Biological and Environmental Sciences, Liverpool John Moores University, Liverpool, UK.

出版信息

Commun Biol. 2021 Jun 18;4(1):761. doi: 10.1038/s42003-021-02239-2.

Abstract

Regular exercise is important for physical and mental health. An underexplored and intriguing property of exercise is its actions on the body's 24 h or circadian rhythms. Molecular clock cells in the brain's suprachiasmatic nuclei (SCN) use electrical and chemical signals to orchestrate their activity and convey time of day information to the rest of the brain and body. To date, the long-lasting effects of regular physical exercise on SCN clock cell coordination and communication remain unresolved. Utilizing mouse models in which SCN intercellular neuropeptide signaling is impaired as well as those with intact SCN neurochemical signaling, we examined how daily scheduled voluntary exercise (SVE) influenced behavioral rhythms and SCN molecular and neuronal activities. We show that in mice with disrupted neuropeptide signaling, SVE promotes SCN clock cell synchrony and robust 24 h rhythms in behavior. Interestingly, in both intact and neuropeptide signaling deficient animals, SVE reduces SCN neural activity and alters GABAergic signaling. These findings illustrate the potential utility of regular exercise as a long-lasting and effective non-invasive intervention in the elderly or mentally ill where circadian rhythms can be blunted and poorly aligned to the external world.

摘要

定期运动对身心健康都很重要。运动对身体 24 小时或昼夜节律的作用是一个尚未充分探索但很有趣的特性。大脑视交叉上核(SCN)中的分子时钟细胞利用电和化学信号来协调其活动,并将一天中的时间信息传递给大脑和身体的其他部位。迄今为止,定期进行体育锻炼对 SCN 时钟细胞协调和通讯的长期影响仍未得到解决。利用 SCN 细胞间神经肽信号受损的小鼠模型以及 SCN 神经化学信号正常的小鼠模型,我们研究了每日计划的自愿运动(SVE)如何影响行为节律以及 SCN 的分子和神经元活动。我们发现,在神经肽信号受损的小鼠中,SVE 促进了 SCN 时钟细胞的同步性以及行为的 24 小时节律。有趣的是,在完整的和神经肽信号缺失的动物中,SVE 降低了 SCN 的神经活动并改变了 GABA 能信号。这些发现说明了定期运动作为一种长期有效的非侵入性干预措施在老年人或精神疾病患者中的潜在应用价值,这些患者的昼夜节律可能会减弱且与外部世界不协调。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/226a/8213798/f7a9302e18b5/42003_2021_2239_Fig1_HTML.jpg

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