哺乳动物的褪黑激素和季节同步性

IF 8.3 1区 医学 Q1 ENDOCRINOLOGY & METABOLISM Journal of Pineal Research Pub Date : 2024-08-12 DOI:10.1111/jpi.12996
David G. Hazlerigg, Valérie Simonneaux, Hugues Dardente
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引用次数: 0

摘要

在哺乳动物中,季节性机遇和挑战是通过生理和行为的程序性变化来预测的。适当的预期时间取决于与外部太阳年的同步,通过使用日长(光周期)作为同步信号来实现。在哺乳动物中,松果体夜间分泌的褪黑激素是光周期变化的主要激素介质,通过下丘脑-垂体轴发挥其作用。在这篇综述/展望中,我们探讨了褪黑激素季节同步效应研究历史上的重要发展,强调了小结节旁-榕树细胞模块在这一过程中发挥的作用。我们接着探讨下游途径,其中包括离散的下丘脑神经元群。表达神经肽吻肽(kisspeptin)和(Arg)(Phe)相关肽-3(RFRP-3)的神经元控制着季节性生殖功能,而表达体生长抑素(somatostatin)的神经元可能参与了季节性代谢适应。最后,我们提出了几个悬而未决的问题,需要解决这些问题才能更透彻地了解褪黑激素对季节同步的深刻影响。
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Melatonin and Seasonal Synchrony in Mammals

In mammals, seasonal opportunities and challenges are anticipated through programmed changes in physiology and behavior. Appropriate anticipatory timing depends on synchronization to the external solar year, achieved through the use of day length (photoperiod) as a synchronizing signal. In mammals, nocturnal production of melatonin by the pineal gland is the key hormonal mediator of photoperiodic change, exerting its effects via the hypothalamopituitary axis. In this review/perspective, we consider the key developments during the history of research into the seasonal synchronizer effect of melatonin, highlighting the role that the pars tuberalis–tanycyte module plays in this process. We go on to consider downstream pathways, which include discrete hypothalamic neuronal populations. Neurons that express the neuropeptides kisspeptin and (Arg)(Phe)–related peptide-3 (RFRP-3) govern seasonal reproductive function while neurons that express somatostatin may be involved in seasonal metabolic adaptations. Finally, we identify several outstanding questions, which need to be addressed to provide a much thorough understanding of the deep impact of melatonin upon seasonal synchronization.

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来源期刊
Journal of Pineal Research
Journal of Pineal Research 医学-内分泌学与代谢
CiteScore
17.70
自引率
4.90%
发文量
66
审稿时长
1 months
期刊介绍: The Journal of Pineal Research welcomes original scientific research on the pineal gland and melatonin in vertebrates, as well as the biological functions of melatonin in non-vertebrates, plants, and microorganisms. Criteria for publication include scientific importance, novelty, timeliness, and clarity of presentation. The journal considers experimental data that challenge current thinking and welcomes case reports contributing to understanding the pineal gland and melatonin research. Its aim is to serve researchers in all disciplines related to the pineal gland and melatonin.
期刊最新文献
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