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Circadian rhythm of cardiac electrophysiology, arrhythmogenesis, and the underlying mechanisms

机译:昼夜节律的心脏电生理学,arrhythmogenesis和底层机制

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Cardiac arrhythmias are a leading cause of cardiovascular death. It has long been accepted that life-threatening cardiac arrhythmias (ventricular tachycardia, ventricular fibrillation, and sudden cardiac death) are more likely to occur in the morning after waking. It is perhaps less well recognized that there is a circadian rhythm in cardiac pacemaking and other electrophysiological properties of the heart. In addition, there is a circadian rhythm in other arrhythmias, for example, bradyarrhythmias and supraventricular arrhythmias. Two mechanisms may underlie this finding: (1) a central circadian clock in the suprachiasmatic nucleus in the hypothalamus may directly affect the electrophysiology of the heart and arrhythmo-genesis via various neurohumoral factors, particularly the autonomic nervous system; or (2) a local circadian clock in the heart itself (albeit under the control of the central clock) may drive a circadian rhythm in the expression of ion channels in the heart, which in turn varies arrhythmic substrate. This review summarizes the current understanding of the circadian rhythm in cardiac electrophysiology, arrhythmogenesis, and the underlying molecular mechanisms.
机译:心律失常的主要原因心血管死亡。这危及生命的心律失常(室性心动过速、心室纤维性颤动、心脏性猝死)可能发生在早上醒来。也许是意识到有一个少的好吗在心脏起搏和其他生理节奏心脏的电生理特性。此外,还有其他的昼夜节律例如,心律失常bradyarrhythmias和室上性心律失常。构成这一发现:(1)中央昼夜时钟在视交叉上核下丘脑可能直接影响到心脏电生理学和arrhythmo-genesis通过各种神经体液的因素,特别是自主神经系统;心脏本身(尽管的控制下中央时钟)可能驱动昼夜节律心脏离子通道的表达,进而变化无节奏的衬底。理解的现状作一综述心脏的生理节奏电生理学,arrhythmogenesis,潜在的分子机制。

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