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围产期时钟应激串扰的编程。

Perinatal Programming of Circadian Clock-Stress Crosstalk.

机构信息

Institute of Neurobiology, Center of Brain, Behavior & Metabolism, University of Lübeck, Marie-Curie Street, 23562 Lübeck, Germany.

出版信息

Neural Plast. 2018 Feb 8;2018:5689165. doi: 10.1155/2018/5689165. eCollection 2018.

Abstract

An intact communication between circadian clocks and the stress system is important for maintaining physiological homeostasis under resting conditions and in response to external stimuli. There is accumulating evidence for a reciprocal interaction between both-from the systemic to the molecular level. Disruption of this interaction by external factors such as shiftwork, jetlag, or chronic stress increases the risk of developing metabolic, immune, or mood disorders. From experiments in rodents, we know that both systems maturate during the perinatal period. During that time, exogenous factors such as stress or alterations in the external photoperiod may critically affect-or -physiological functions later in life. This developmental programming process has been attributed to maternal stress signals reaching the embryo, which lastingly change gene expression through the induction of epigenetic mechanisms. Despite the well-known function of the adult circadian system in temporal coordination of physiology and behavior, the role of maternal and embryonic circadian clocks during pregnancy and postnatal development is still poorly defined. A better understanding of the circadian-stress crosstalk at different periods of development may help to improve stress resistance and devise preventive and therapeutic strategies against chronic stress-associated disorders.

摘要

昼夜节律钟与应激系统之间保持完整的交流对于在休息状态下和应对外部刺激时维持生理稳态非常重要。越来越多的证据表明,两者之间存在相互作用——从全身到分子水平。外部因素(如轮班工作、时差或慢性应激)破坏这种相互作用会增加发生代谢、免疫或情绪障碍的风险。从啮齿动物实验中我们知道,这两个系统在围产期成熟。在此期间,应激等外源因素或外部光周期的改变可能会严重影响生命后期的生理功能。这种发育编程过程归因于到达胚胎的母体应激信号,这些信号通过诱导表观遗传机制持久地改变基因表达。尽管成年昼夜节律系统在生理和行为的时间协调方面具有众所周知的功能,但母代和胚胎昼夜节律钟在怀孕期间和产后发育中的作用仍未得到明确界定。更好地了解不同发育阶段的昼夜节律-应激串扰可能有助于提高应激抗性,并制定针对慢性应激相关疾病的预防和治疗策略。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5ceb/5822916/8ec3f1c75e05/NP2018-5689165.001.jpg

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