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代谢稳态:一切都在时间里。

Metabolic Homeostasis: It's All in the Timing.

机构信息

Department of Physiology, University of Toronto, Toronto, Ontario M5S 1A8Canada.

Department of Medicine, University of Toronto, Toronto, Ontario M5S 1A8Canada.

出版信息

Endocrinology. 2022 Jan 1;163(1). doi: 10.1210/endocr/bqab199.

Abstract

Cross-talk between peripheral tissues is essential to ensure the coordination of nutrient intake with disposition during the feeding period, thereby preventing metabolic disease. This mini-review considers the interactions between the key peripheral tissues that constitute the metabolic clock, each of which is considered in a separate mini-review in this collation of articles published in Endocrinology in 2020 and 2021, by Martchenko et al (Circadian rhythms and the gastrointestinal tract: relationship to metabolism and gut hormones); Alvarez et al (The microbiome as a circadian coordinator of metabolism); Seshadri and Doucette (Circadian regulation of the pancreatic beta cell); McCommis et al (The importance of keeping time in the liver); Oosterman et al (The circadian clock, shift work, and tissue-specific insulin resistance); and Heyde et al (Contributions of white and brown adipose tissues to the circadian regulation of energy metabolism). The use of positive- and negative-feedback signals, both hormonal and metabolic, between these tissues ensures that peripheral metabolic pathways are synchronized with the timing of food intake, thus optimizing nutrient disposition and preventing metabolic disease. Collectively, these articles highlight the critical role played by the circadian clock in maintaining metabolic homeostasis.

摘要

外周组织之间的串扰对于确保在进食期间将营养摄入与分配协调起来以预防代谢性疾病至关重要。这篇综述考虑了构成代谢时钟的关键外周组织之间的相互作用,Martchenko 等人在 2020 年和 2021 年发表的内分泌学杂志中的一系列文章中分别对每一个组织进行了综述:(昼夜节律与胃肠道:与代谢和肠道激素的关系);Alvarez 等人(微生物组作为代谢的昼夜协调者);Seshadri 和 Doucette(胰腺β细胞的昼夜调节);McCommis 等人(在肝脏中保持时间的重要性);Oosterman 等人(昼夜节律、轮班工作和组织特异性胰岛素抵抗);以及 Heyde 等人(白色和棕色脂肪组织对能量代谢昼夜调节的贡献)。这些组织之间使用正反馈和负反馈信号(包括激素和代谢物),确保了外周代谢途径与进食时间同步,从而优化了营养分配并预防了代谢性疾病。这些文章共同强调了昼夜钟在维持代谢平衡方面的关键作用。

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