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钠钙交换电流在心脏动作电位中的作用。

The role of Na-Ca exchange current in the cardiac action potential.

作者信息

Janvier N C, Boyett M R

机构信息

Department of Physiology, University of Leeds, UK.

出版信息

Cardiovasc Res. 1996 Jul;32(1):69-84.

PMID:8776405
Abstract

Since 1981, when Mullins published his provocative book proposing that the Na-Ca exchanger is electrogenic, it has been shown, first by computer simulation by Noble and later by experiment by various investigators, that inward iNaCa triggered by the Ca2+ transient is responsible for the low plateau of the atrial action potential and contributes to the high plateau of the ventricular action potential. Reduction or complete block of inward iNaCa by buffering intracellular Ca2+ with EGTA or BAPTA, by blocking SR Ca2+ release or by substituting extracellular Na+ with Li+ can result in a shortening of the action potential. The effect of block of outward iNaCa or complete block of both inward and outward iNaCa on the action potential has not been investigated experimentally, because of the lack of a suitable blocker, and remains a goal for the future. An increase in the intracellular Na+ concentration (after the application of cardiac glycoside or an increase in heart rate) or an increase in extracellular Ca2+ are believed to lead to an outward shift in iNaCa at plateau potentials and a shortening of the action potential. Changes in the Ca2+ transient are expected to result in changes in inward iNaCa and thus the action potential. This may explain the shortening of the premature action potential as well as the prolongation of the action potential when a muscle is allowed to shorten during the action potential. Inward iNaCa may play an important role in both normal and abnormal pacemaker activity in the heart.

摘要

自1981年穆林斯出版其颇具争议的书籍,提出钠钙交换体具有电生电性以来,先是诺布尔通过计算机模拟,后来又有多位研究者通过实验证明,由Ca2+瞬变引发的内向钠钙交换电流(iNaCa)负责心房动作电位的低平段,并对心室动作电位的高平段有贡献。用乙二醇双四乙酸(EGTA)或1,2-双(2-氨基苯氧基)乙烷-N,N,N',N'-四乙酸(BAPTA)缓冲细胞内Ca2+、阻断肌浆网Ca2+释放或用Li+替代细胞外Na+,从而减少或完全阻断内向iNaCa,可导致动作电位缩短。由于缺乏合适的阻断剂,向外iNaCa阻断或内向和向外iNaCa完全阻断对动作电位的影响尚未进行实验研究,仍是未来的一个目标。细胞内Na+浓度升高(应用强心苷后或心率增加时)或细胞外Ca2+增加,被认为会导致平台期电位时iNaCa向外偏移,动作电位缩短。Ca2+瞬变的变化预计会导致内向iNaCa的变化,进而导致动作电位的变化。这可能解释了早搏动作电位的缩短以及当肌肉在动作电位期间收缩时动作电位的延长。内向iNaCa可能在心脏正常和异常起搏活动中都起重要作用。

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