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莫能菌素诱导的细胞内钠离子增加引起心肌细胞钠离子和钙离子电流的变化,并调节钠-钾和钠-钙转运。

Monensin-Induced Increase in Intracellular Na+ Induces Changes in Na+ and Ca2+ Currents and Regulates Na+-K+ and Na+-Ca2+ Transport in Cardiomyocytes.

机构信息

Department of Rational Medicinal Science, Faculty of Pharmaceutical Sciences, Doshisha Women's College, Kyotanabe, Japan,

Department of Rational Medicinal Science, Faculty of Pharmaceutical Sciences, Doshisha Women's College, Kyotanabe, Japan.

出版信息

Pharmacology. 2021;106(1-2):91-105. doi: 10.1159/000510576. Epub 2020 Oct 28.

Abstract

BACKGROUND/AIMS: Monensin, an Na ionophore, increases intracellular Na ([Na]i). Alteration of [Na]i influences ion transport through the sarcolemmal membrane. So far, the effects of monensin on ventricular myocytes have not been examined in detail. The main objective of this study was to elucidate the mechanism via which monensin-evoked increases in [Na]i affect the membrane potential and currents in ventricular myocytes of guinea pigs.

METHODS

Membrane potentials and currents were measured using the whole-cell patch-clamp technique in single myocytes. The concentration of intracellular Ca ([Ca]i) was evaluated by measuring fluorescence intensity of Fluo-4.

RESULTS

Monensin (10-5M) shortened the action potential duration (APD) and reduced the amplitude of the plateau phase. In addition, monensin decreased the sodium current (INa) and shifted the inactivation curve to the hyperpolarized direction. Moreover, it decreased the L-type calcium current (ICa). However, this effect was attenuated by increasing the buffering capacity of [Ca]i. The Na-Ca exchange current (INa-Ca) was activated particularly in the reverse mode. Na-K pump current (INa-K) was also activated. Notably, the inward rectifying K current (IK1) was not affected, and the change in the delayed outward K current (IK) was not evident.

CONCLUSION

These results suggest that the monensin-induced shortened APD and reduced amplitude of the plateau phase are primarily due to the decrease in the ICa, the activation of the reverse mode of INa-Ca, and the increased INa-K, and second due to the decreased INa. The IK and the IK1 may not be associated with the abovementioned changes induced by monensin. The elevation of [Na]i can exert multiple influences on electrophysiological phenomena in cardiac myocytes.

摘要

背景/目的:莫能菌素是一种钠离子载体,能增加细胞内钠离子浓度([Na]i)。[Na]i 的改变会影响肌细胞膜的离子转运。迄今为止,莫能菌素对心室肌细胞的影响尚未被详细研究。本研究的主要目的是阐明莫能菌素引起的[Na]i 增加如何影响豚鼠心室肌细胞的膜电位和电流的机制。

方法

使用全细胞膜片钳技术在单个心肌细胞中测量膜电位和电流。通过测量 Fluo-4 的荧光强度来评估细胞内钙离子浓度([Ca]i)。

结果

莫能菌素(10-5M)缩短动作电位时程(APD)并降低平台期幅度。此外,莫能菌素降低钠电流(INa)并将失活曲线移向超极化方向。此外,它还降低了 L 型钙电流(ICa)。然而,这种作用可以通过增加[Ca]i 的缓冲能力而减弱。钠钙交换电流(INa-Ca)特别在反向模式下被激活。钠钾泵电流(INa-K)也被激活。值得注意的是,内向整流钾电流(IK1)不受影响,延迟外向钾电流(IK)的变化不明显。

结论

这些结果表明,莫能菌素诱导的 APD 缩短和平台期幅度降低主要是由于 ICa 的减少、INa-Ca 的反向模式激活和 INa-K 的增加,其次是由于 INa 的减少。IK 和 IK1 可能与莫能菌素引起的上述变化无关。[Na]i 的升高可以对心肌细胞的电生理现象产生多种影响。

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