Sleep homeostasis and the circadian clock: Do the circadian pacemaker and the sleep homeostat influence each other’s functioning?

Tom Deboer
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引用次数: 132

Abstract

Sleep is regulated by a homeostatic and a circadian process. Together these two processes determine most aspects of sleep and related variables like sleepiness and alertness. The two processes are known to be able to work independently, but also to both influence sleep and sleep related variables in an additive or more complex manner. The question remains whether the two processes are directly influencing each other.

The present review summarizes evidence from behavioural and electroencephalographic determined sleep, electrophysiology, gene knock out mouse models, and mathematical modelling to explore whether sleep homeostasis can influence circadian clock functioning and vice versa.

There is a multitude of data available showing parallel action or influence of sleep homeostatic mechanisms and the circadian clock on several objective and subjective variables related to sleep and alertness. However, the evidence of a direct influence of the circadian clock on sleep homeostatic mechanisms is sparse and more research is needed, particularly applying longer sleep deprivations that include a second night.

The strongest evidence of an influence of sleep homeostatic mechanisms on clock functioning comes from sleep deprivation experiments, demonstrating an attenuation of phase shifts of the circadian rhythm to light pulses when sleep homeostatic pressure is increased. The data suggest that the circadian clock is less susceptible to light when sleep pressure is high.

The available data indicate that a strong central clock will induce periods of deep sleep, which in turn will strengthen clock function. Both are therefore important for health and wellbeing. Weakening of one will also hamper functioning of the other. Shift work and jet lag are situations where one tries to adapt to zeitgebers in a condition where sleep is compromised. Adaptation to zeitgebers may be improved by introducing nap schedules to reduce sleep pressure, and through that increasing clock susceptibility to light.

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睡眠内稳态和生物钟:昼夜节律起搏器和睡眠内稳态器相互影响对方的功能吗?
睡眠是由体内平衡和昼夜节律过程调节的。这两个过程共同决定了睡眠的大部分方面和相关变量,如困倦和警觉性。已知这两个过程能够独立工作,但也都以一种附加的或更复杂的方式影响睡眠和睡眠相关变量。问题仍然是这两个过程是否直接相互影响。本综述总结了来自行为和脑电图决定的睡眠、电生理学、基因敲除小鼠模型和数学模型的证据,以探索睡眠内稳态是否可以影响生物钟功能,反之亦然。有大量可用的数据表明,睡眠稳态机制和生物钟对与睡眠和警觉性相关的几个客观和主观变量的平行作用或影响。然而,昼夜节律钟对睡眠稳态机制的直接影响的证据很少,需要更多的研究,特别是应用包括第二晚在内的更长时间的睡眠剥夺。睡眠内稳态机制对生物钟功能影响的最有力证据来自睡眠剥夺实验,表明当睡眠内稳态压力增加时,昼夜节律的相移到光脉冲的衰减。数据表明,当睡眠压力高时,生物钟对光线的影响较小。现有的数据表明,强烈的中央生物钟会诱发深度睡眠,而深度睡眠反过来又会增强生物钟的功能。因此,两者对健康和幸福都很重要。削弱一方也会妨碍另一方的运作。倒班和时差是在睡眠受到影响的情况下试图适应授时因子的情况。通过引入午睡时间表来减少睡眠压力,并通过增加生物钟对光的敏感性,可以改善对授时基因的适应。
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来源期刊
Neurobiology of Sleep and Circadian Rhythms
Neurobiology of Sleep and Circadian Rhythms Neuroscience-Behavioral Neuroscience
CiteScore
4.50
自引率
0.00%
发文量
9
审稿时长
69 days
期刊介绍: Neurobiology of Sleep and Circadian Rhythms is a multidisciplinary journal for the publication of original research and review articles on basic and translational research into sleep and circadian rhythms. The journal focuses on topics covering the mechanisms of sleep/wake and circadian regulation from molecular to systems level, and on the functional consequences of sleep and circadian disruption. A key aim of the journal is the translation of basic research findings to understand and treat sleep and circadian disorders. Topics include, but are not limited to: Basic and translational research, Molecular mechanisms, Genetics and epigenetics, Inflammation and immunology, Memory and learning, Neurological and neurodegenerative diseases, Neuropsychopharmacology and neuroendocrinology, Behavioral sleep and circadian disorders, Shiftwork, Social jetlag.
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