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昼夜节律光驯化中的多巴胺信号:失同步的后果。

Dopamine Signaling in Circadian Photoentrainment: Consequences of Desynchrony.

机构信息

Department of Biology, University of Virginia, Charlottesville, VA.

Department of Neuroscience, School of Medicine, University of Virginia, Charlottesville, VA.

出版信息

Yale J Biol Med. 2019 Jun 27;92(2):271-281. eCollection 2019 Jun.

Abstract

Circadian rhythms, or biological oscillations of approximately 24 hours, impact almost all aspects of our lives by regulating the sleep-wake cycle, hormone release, body temperature fluctuation, and timing of food consumption. The molecular machinery governing these rhythms is similar across organisms ranging from unicellular fungi to insects, rodents, and humans. Circadian entrainment, or temporal synchrony with one's environment, is essential for survival. In mammals, the central circadian pacemaker is located in the suprachiasmatic nucleus (SCN) of the hypothalamus and mediates entrainment to environmental conditions. While the light:dark cycle is the primary environmental cue, arousal-inducing, non-photic signals such as food consumption, exercise, and social interaction are also potent synchronizers. Many of these stimuli enhance dopaminergic signaling suggesting that a cohesive circadian physiology depends on the relationship between circadian clocks and the neuronal circuits responsible for detecting salient events. Here, we review the inner workings of mammalian circadian entrainment, and describe the health consequences of circadian rhythm disruptions with an emphasis on dopamine signaling.

摘要

昼夜节律,或大约 24 小时的生物振荡,通过调节睡眠-觉醒周期、激素释放、体温波动和食物摄入时间,影响我们生活的几乎所有方面。从单细胞真菌到昆虫、啮齿动物和人类,控制这些节律的分子机制在不同生物中是相似的。昼夜节律同步,或与环境的时间同步,对生存至关重要。在哺乳动物中,中央生物钟位于下丘脑的视交叉上核(SCN),并介导对环境条件的适应。虽然光暗周期是主要的环境线索,但觉醒诱导的非光信号,如食物摄入、运动和社交互动,也是强大的同步器。许多这些刺激增强了多巴胺能信号,这表明一个协调的昼夜生理节律取决于昼夜节律钟和负责检测显著事件的神经元回路之间的关系。在这里,我们回顾了哺乳动物昼夜节律适应的内部运作,并描述了昼夜节律紊乱的健康后果,重点是多巴胺信号。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b7f7/6585530/1cbd7144dd80/yjbm_92_2_271_g01.jpg

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