The SCN-HPA-Periphery Circadian Timing System: Mathematical Modeling of Clock Synchronization and the Effects of Photoperiod on Jetlag Adaptation.

IF 2.9 3区 生物学 Q2 BIOLOGY
Journal of Biological Rhythms Pub Date : 2023-12-01 Epub Date: 2023-08-02 DOI:10.1177/07487304231188541
Yannuo Li, Ioannis P Androulakis
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引用次数: 0

Abstract

Synchronizing the circadian timing system (CTS) to external light/dark cycles is crucial for homeostasis maintenance and environmental adaptation. The CTS is organized hierarchically, with the central pacemaker located in the suprachiasmatic nuclei (SCN) generating coherent oscillations that are entrained to light/dark cycles. These oscillations regulate the release of glucocorticoids by the hypothalamus-pituitary-adrenal (HPA) axis, which acts as a systemic entrainer of peripheral clocks throughout the body. The SCN adjusts its network plasticity in response to variations in photoperiod, leading to changes in the rhythmic release of glucocorticoids and ultimately impacting peripheral clocks. However, the effects of photoperiod-induced variations of glucocorticoids on the synchronization of peripheral clocks are not fully understood, and the interaction between jetlag adaption and photoperiod changes is unclear. This study presents a semi-mechanistic mathematical model to investigate how the CTS responds to changes in photoperiod. Specifically, the study focuses on the entrainment properties of a system composed of the SCN, HPA axis, and peripheral clocks. The results show that high-amplitude glucocorticoid rhythms lead to a more coherent phase distribution in the periphery. In addition, our study investigates the effect of photoperiod exposure on jetlag recovery time and phase shift, proposing different interventional strategies for eastward and westward jetlag. The findings suggest that decreasing photic exposure before jetlag during eastward traveling and after jetlag during westward traveling can accelerate jetlag readaptation. The study provides insights into the mechanisms of CTS organization and potential recovery strategies for transitions between time zones and lighting zones.

SCN-HPA外围昼夜节律系统:时钟同步的数学模型和光周期对时差适应的影响。
将昼夜节律计时系统(CTS)与外部光/暗周期同步对于稳态维持和环境适应至关重要。CTS是按层次组织的,中央起搏器位于视交叉上核(SCN),产生相干振荡,并伴随着光/暗周期。这些振荡通过下丘脑-垂体-肾上腺(HPA)轴调节糖皮质激素的释放,HPA轴是全身外周时钟的系统性夹带器。SCN根据光周期的变化调整其网络可塑性,导致糖皮质激素的节律性释放发生变化,并最终影响外周时钟。然而,光周期诱导的糖皮质激素变化对外周时钟同步的影响尚不完全清楚,时差适应与光周期变化之间的相互作用也不清楚。这项研究提出了一个半机械数学模型来研究CTS如何对光周期的变化做出反应。具体而言,研究的重点是由SCN、HPA轴和外围时钟组成的系统的夹带特性。结果表明,高振幅的糖皮质激素节律导致外周的相位分布更加一致。此外,我们的研究还调查了光周期暴露对时差恢复时间和相移的影响,提出了对东时差和西时差的不同干预策略。研究结果表明,在东航时差前和西航时差后减少光照可以加速时差的重新适应。这项研究深入了解了CTS组织的机制以及时区和照明区域之间转换的潜在恢复策略。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
CiteScore
6.10
自引率
8.60%
发文量
48
审稿时长
>12 weeks
期刊介绍: Journal of Biological Rhythms is the official journal of the Society for Research on Biological Rhythms and offers peer-reviewed original research in all aspects of biological rhythms, using genetic, biochemical, physiological, behavioral, epidemiological & modeling approaches, as well as clinical trials. Emphasis is on circadian and seasonal rhythms, but timely reviews and research on other periodicities are also considered. The journal is a member of the Committee on Publication Ethics (COPE).
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