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分子生物钟在人体能量平衡中的作用。

The role of the molecular circadian clock in human energy homeostasis.

机构信息

Department of Physiology and Pharmacology.

Department of Molecular Medicine and Surgery, Section for Integrative Physiology, Karolinska Institutet, Stockholm, Sweden.

出版信息

Curr Opin Lipidol. 2021 Feb 1;32(1):16-23. doi: 10.1097/MOL.0000000000000722.

Abstract

PURPOSE OF REVIEW

The aim of this review is to present the latest findings on the role of the circadian clock in the control of metabolism, and the therapeutic potential of chronotherapy to regulate energy homeostasis in humans.

RECENT FINDINGS

We summarized the recent advances related to circadian clock regulation of food intake and energy expenditure. In peripheral organs, mitochondrial oxidative capacity and lipolysis show circadian pattern in humans, and rhythms disruption may be involved in the pathogenesis of metabolic diseases. Indeed, circadian desynchrony affects food intake, insulin sensitivity, and increases the risk of developing metabolic disease. Time-targeted strategies, which aim to synchronize external cues with the molecular clock to improve metabolic outcomes, have positive effects on metabolism in humans, with several studies showing that time-targeted feeding improves body weight loss and glucose tolerance.

SUMMARY

The interest in time-targeted strategies to prevent or manage metabolic disturbances has grown this past year with encouraging health benefits. To maximize the therapeutic effect of these strategies, further research is warranted to delineate the molecular regulation of metabolic processes controlled by the clock and especially its modulation in contexts such as aging, sex differences, or metabolic diseases.

摘要

目的综述

本文旨在介绍生物钟在代谢调控中的最新研究发现,并探讨时间治疗学调节人体能量平衡的治疗潜力。

最新发现

本文总结了生物钟对摄食和能量消耗调控的最新研究进展。在周围组织中,人类的线粒体氧化能力和脂肪分解呈现出昼夜节律,而节律紊乱可能与代谢性疾病的发病机制有关。事实上,昼夜节律失调会影响摄食、胰岛素敏感性,并增加发生代谢性疾病的风险。时间靶向策略旨在使外部线索与分子钟同步,以改善代谢结果,这些策略对人体代谢有积极影响,多项研究表明,时间靶向喂养可改善体重减轻和葡萄糖耐量。

总结

过去一年,人们对时间靶向策略预防或治疗代谢紊乱的兴趣日益浓厚,这些策略带来了令人鼓舞的健康益处。为了最大限度地发挥这些策略的治疗效果,需要进一步研究来阐明时钟控制的代谢过程的分子调控,特别是在衰老、性别差异或代谢性疾病等情况下的调控。

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