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首页> 外文期刊>Journal of cardiovascular electrophysiology >Na(+) current in human ventricle: implications for sodium loading and homeostasis.
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Na(+) current in human ventricle: implications for sodium loading and homeostasis.

机译:人脑室中的Na(+)电流:对钠负荷和体内稳态的影响。

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摘要

The Na current (I(Na)) in human ventricle is carried through a specific isoform of the voltage gated Na channel in heart. The pore forming alpha-subunit is encoded by the gene SCN5A. Up to four beta-subunits may be associated, and the larger macromolecular complex may include attachments to cytoskeleton and scaffolding proteins, all of which may affect the gating kinetics of the current. I(Na) underlies initiation and propagation of action potentials in the heart and plays a prominent role in cardiac electrophysiology and arrhythmia. In addition, I(Na) also loads the ventricular cell with Na(+) ions and plays an important role in intracellular Na homeostasis. This review considers the structure and function of the human cardiac Na channel that carries I(Na) with a particular consideration of the implications of alterations in I(Na) in acquired cardiac diseases such as hypertrophy, failure, and ischemia, which affect Na loading.
机译:人脑室中的钠电流(I(Na))通过心脏中电压门控钠通道的特定同工型携带。孔形成α-亚基由基因SCN5A编码。最多可以关联四个β亚基,并且较大的大分子复合物可能包含与细胞骨架和支架蛋白的附着,所有这些都可能影响电流的门控动力学。 I(Na)是心脏动作电位的启动和传播的基础,并且在心脏电生理和心律不齐中起着重要作用。此外,I(Na)还可以向心室细胞加载Na(+)离子,并且在细胞内Na稳态中起重要作用。这篇综述考虑了携带I(Na)的人心脏Na通道的结构和功能,并特别考虑了I(Na)改变对获得性心脏疾病(如肥大,衰竭和局部缺血)的影响,这些疾病会影响Na负荷。

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