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[褪黑素在人类中的作用:昼夜节律钟的生化标志物及内源性同步器]

[Melatonin in humans: a biochemical marker of the circadian clock and an endogenous synchronizer].

作者信息

Claustrat B, Geoffriau M, Brun J, Chazot G

机构信息

Service de radiopharmacie et radioanalyse, hopital Neuro-Cardiologique, Lyon, France.

出版信息

Neurophysiol Clin. 1995;25(6):351-9. doi: 10.1016/0987-7053(96)84908-2.

Abstract

Melatonin (MLT) is a methoxyindole secreted principally by the pineal gland. It is synthesized at night under normal environmental conditions. The endogenous rhythm of secretion is generated by the suprachiasmatic nuclei and activated by the light/dark cycle. Light is able to both suppress or activate melatonin production on the light schedule. The nycthohemeral rhythm of this hormone can be determined by repeated measurements of plasma or saliva MLT or urine sulfatoxy-MLT, the main hepatic metabolite. Melatonin can be considered as the output (the hand) of the endogenous clock. Since the regulating system follows a central and sympathetic nervous pathway, an abnormality at any level could unspecifically modify the MLT secretion, especially in patients with sympathalgia or dysautonomia. Melatonin plays the role of an endogenous zeitgeber on core temperature or sleep-wake cycle. Exogenous MLT is able to influence the endogenous secretion of the hormone according to a phase response curve. There are practical implications for this property in situations when biological rhythms are disturbed (jet-lag syndrome, delayed sleep phase syndrome, insomnia in blind people, shift-work, insomnia in elderly people). Improvement of pharmaceutical forms (controlled release preparations) or development of MLT analogs could lead to decisive progress.

摘要

褪黑素(MLT)是一种主要由松果体分泌的甲氧基吲哚。在正常环境条件下,它于夜间合成。分泌的内源性节律由视交叉上核产生,并受光/暗周期激活。在光照条件下,光既能抑制也能激活褪黑素的产生。这种激素的昼夜节律可以通过反复测量血浆或唾液中的MLT或尿液中的硫酸氧基-MLT(主要的肝脏代谢产物)来确定。褪黑素可被视为生物钟的输出(指针)。由于调节系统遵循中枢和交感神经通路,任何水平的异常都可能非特异性地改变MLT分泌,尤其是在患有交感神经痛或自主神经功能障碍的患者中。褪黑素在核心体温或睡眠-觉醒周期中起着内源性授时因子的作用。外源性MLT能够根据相位反应曲线影响该激素的内源性分泌。在生物节律紊乱的情况下(时差综合征、睡眠时相延迟综合征、盲人失眠、轮班工作、老年人失眠),这一特性具有实际意义。药物剂型的改进(控释制剂)或MLT类似物的开发可能会带来决定性进展。

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