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去极化诱导的钙内流在触发大鼠心室肌细胞钠钙交换、细胞内钙释放和收缩过程中的作用。

A role for depolarisation induced calcium entry on the Na-Ca exchange in triggering intracellular calcium release and contraction in rat ventricular myocytes.

作者信息

Levi A J, Brooksby P, Hancox J C

机构信息

Department of Physiology, School of Medical Sciences, University of Bristol, United Kingdom.

出版信息

Cardiovasc Res. 1993 Sep;27(9):1677-90. doi: 10.1093/cvr/27.9.1677.

Abstract

OBJECTIVE

The aim was to test whether depolarisation-induced calcium entry on the Na-Ca exchange is able to trigger calcium release from the sarcoplasmic reticulum in rat ventricular myocytes.

METHODS

Myocytes were isolated enzymatically from the left ventricle of the rat heart. Cells were impaled with narrow tipped microelectrodes to minimise intracellular dialysis and maintain normal internal ionic conditions. Cells were voltage clamped, contraction was measured optically, and in some experiments intracellular calcium was measured with Fura-2.

RESULTS

When the fast Na current was inactivated by using a holding potential of -40 mV, Ca entry via L-type Ca channels was expected to be the only mechanism capable of triggering sarcoplasmic reticular Ca release. In this situation, blocking L-type Ca channels should have abolished sarcoplasmic reticular release and the phasic twitch. However, after 2 min exposure to 20 microM nifedipine, which abolished the Ca current (ICa) completely, voltage clamp depolarisation from -40 mV to 0 mV still elicited 41(SEM 8.9)% of the control phasic twitch (n = 22 cells). This shows that there must be another mechanism, besides Ca entry via Ca channels, by which membrane depolarisation can trigger sarcoplasmic reticular release and the phasic twitch. The phasic twitch that remained in the presence of nifedipine increased progressively with the magnitude of step depolarisation, required a functional sarcoplasmic reticulum, was abolished by 5 mM external nickel, and was sensitive to both the Na and Ca transmembrane gradients.

CONCLUSIONS

The voltage dependent sarcolemmal Na-Ca exchange is predicted theoretically to generate a transient Ca entry at the start of a step membrane depolarisation, when membrane potential suddenly becomes more positive than the reversal potential of the Na-Ca exchange. The results of this study indicate that in rat myocytes with normal internal ions, physiological levels of membrane depolarisation generate a sufficient Ca entry on the exchange to trigger sarcoplasmic reticular calcium release and contraction. In the absence of ICa, this mechanism is capable of triggering a calcium release which leads to about 40% of the phasic contraction in cells depolarised from -40 mV to 0 mV. The existence of this sarcoplasmic triggering mechanism may have significance for the normal control of cardiac muscle contraction.

摘要

目的

旨在测试钠钙交换体上的去极化诱导钙内流是否能够触发大鼠心室肌细胞肌浆网的钙释放。

方法

酶法分离大鼠心脏左心室的肌细胞。用尖端狭窄的微电极刺入细胞,以尽量减少细胞内透析并维持正常的细胞内离子条件。对细胞进行电压钳制,光学测量收缩,在一些实验中用Fura-2测量细胞内钙。

结果

当通过使用-40 mV的钳制电位使快速钠电流失活时,预期通过L型钙通道的钙内流是唯一能够触发肌浆网钙释放的机制。在这种情况下,阻断L型钙通道应该会消除肌浆网释放和阶段性收缩。然而,在暴露于20 μM硝苯地平2分钟后,硝苯地平完全消除了钙电流(ICa),从-40 mV到0 mV的电压钳去极化仍能引发对照阶段性收缩的41(标准误8.9)%(n = 22个细胞)。这表明除了通过钙通道的钙内流外,必定存在另一种机制,通过该机制膜去极化能够触发肌浆网释放和阶段性收缩。在硝苯地平存在的情况下剩余的阶段性收缩随着去极化阶跃幅度的增加而逐渐增加,需要功能性肌浆网,被5 mM细胞外镍消除,并且对钠和钙的跨膜梯度均敏感。

结论

理论上预测,当膜电位突然变得比钠钙交换体的反转电位更正时,电压依赖性肌膜钠钙交换体在膜去极化阶跃开始时会产生短暂的钙内流。本研究结果表明,在细胞内离子正常的大鼠心肌细胞中,生理水平的膜去极化会在交换体上产生足够的钙内流,从而触发肌浆网钙释放和收缩。在没有ICa的情况下,这种机制能够触发钙释放,导致从-40 mV去极化到0 mV的细胞中约40%的阶段性收缩。这种肌浆网触发机制的存在可能对心肌收缩的正常调控具有重要意义。

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