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A New Cardiac Channelopathy: From Clinical Phenotypes to Molecular Mechanisms Associated With Nav1.5 Gating Pores

机译:一种新的心脏通道疾病:从临床表型到与Nav1.5门控毛孔相关的分子机制。

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摘要

Voltage gated sodium channels (NaV) are broadly expressed in the human body. They are responsible for the initiation of action potentials in excitable cells. They also underlie several physiological processes such as cognitive, sensitive, motor, and cardiac functions. The NaV1.5 channel is the main NaV expressed in the heart. A dysfunction of this channel is usually associated with the development of pure electrical disorders such as long QT syndrome, Brugada syndrome, sinus node dysfunction, atrial fibrillation, and cardiac conduction disorders. However, mutations of Nav1.5 have recently been linked to the development of an atypical clinical entity combining complex arrhythmias and dilated cardiomyopathy. Although several Nav1.5 mutations have been linked to dilated cardiomyopathy phenotypes, their pathogenic mechanisms remain to be elucidated. The gating pore may constitute a common biophysical defect for all NaV1.5 mutations located in the channel's VSDs. The creation of such a gating pore may disrupt the ionic homeostasis of cardiomyocytes, affecting electrical signals, cell morphology, and cardiac myocyte function. The main objective of this article is to review the concept of gating pores and their role in structural heart diseases and to discuss potential pharmacological treatments.
机译:电压门控钠通道(NaV)在人体中广泛表达。它们负责激发细胞中动作电位的启动。它们还构成了一些生理过程的基础,例如认知,敏感,运动和心脏功能。 NaV1.5通道是心脏中表达的主要NaV。该通道的功能障碍通常与纯电障碍的发展有关,例如长QT综合征,Brugada综合征,窦房结功能障碍,心房颤动和心脏传导障碍。然而,Nav1.5的突变最近与结合复杂的心律不齐和扩张型心肌病的非典型临床实体的发展有关。尽管几种Nav1.5突变与扩张型心肌病表型有关,但其致病机制仍有待阐明。门控孔可能构成通道VSD中所有NaV1.5突变的常见生物物理缺陷。此类门控孔的产生可能会破坏心肌细胞的离子稳态,从而影响电信号,细胞形态和心肌细胞功能。本文的主要目的是回顾门控毛孔的概念及其在结构性心脏病中的作用,并讨论潜在的药物治疗方法。

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