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褪黑素与人类心血管疾病的昼夜节律生物学。

Melatonin and circadian biology in human cardiovascular disease.

机构信息

Department of Cardiology, Hospital Universitario de Canarias, Tenerife, Spain.

出版信息

J Pineal Res. 2010 Aug;49(1):14-22. doi: 10.1111/j.1600-079X.2010.00773.x. Epub 2010 Jun 1.

Abstract

Diurnal rhythms influence cardiovascular physiology, i.e. heart rate and blood pressure, and they appear to also modulate the incidence of serious adverse cardiac events. Diurnal variations occur also at the molecular level including changes in gene expression in the heart and blood vessels. Moreover, the risk/benefit ratio of some therapeutic strategies and the concentration of circulating cardiovascular system biomarkers may also vary across the 24-hr light/dark cycle. Synchrony between external and internal diurnal rhythms and harmony among molecular rhythms within the cell are essential for normal organ biology. Diurnal variations in the responsiveness of the cardiovascular system to environmental stimuli are mediated by a complex interplay between extracellular (i.e. neurohumoral factors) and intracellular (i.e. specific genes that are differentially light/dark regulated) mechanisms. Neurohormones, which are particularly relevant to the cardiovascular system, such as melatonin, exhibit a diurnal variation and may play a role in the synchronization of molecular circadian clocks in the peripheral tissue and the suprachiasmatic nucleus. Moreover, mounting evidence reveals that the blood melatonin rhythm has a crucial role in several cardiovascular functions, including daily variations in blood pressure. Melatonin has antioxidant, anti-inflammatory, chronobiotic and, possibly, epigenetic regulatory functions. This article reviews current knowledge related to the biological role of melatonin and its circadian rhythm in cardiovascular disease.

摘要

昼夜节律会影响心血管生理学,例如心率和血压,而且似乎还会调节严重心脏不良事件的发生。分子水平也会出现昼夜变化,包括心脏和血管中基因表达的变化。此外,某些治疗策略的风险/收益比以及循环心血管系统生物标志物的浓度也可能随 24 小时明暗周期而变化。外部和内部昼夜节律之间的同步以及细胞内分子节律之间的和谐对于正常器官生物学至关重要。心血管系统对外界刺激的反应性的昼夜变化是由细胞外(即神经激素因素)和细胞内(即特定的基因,这些基因差异地受到光照/黑暗的调节)机制之间的复杂相互作用介导的。神经激素,特别是与心血管系统相关的神经激素,如褪黑素,表现出昼夜变化,可能在周围组织和视交叉上核的分子生物钟同步中发挥作用。此外,越来越多的证据表明,血液褪黑素节律在包括血压的日常变化在内的几种心血管功能中起着至关重要的作用。褪黑素具有抗氧化、抗炎、生物节律调节和可能的表观遗传调节功能。本文综述了褪黑素及其在心血管疾病中的昼夜节律的生物学作用的最新知识。

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