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电压钳制下猫心室肌缺氧时的离子电流。

Ionic currents during hypoxia in voltage-clamped cat ventricular muscle.

作者信息

Vleugels A, Vereecke J, Carmeliet E

出版信息

Circ Res. 1980 Oct;47(4):501-8. doi: 10.1161/01.res.47.4.501.

Abstract

To explore the mechanisms underlying the shortening of the cardiac action potential in hypoxia, we studied the effect of hypoxia on the ionic currents in cat papillary and trabecular muscles using the single sucrose gap-voltage clamp technique. For potentials positive to -70 mV, hypoxia induces an increase in time-independent outward current. The changes in the tail current suggest that time-dependent outward current is not increased but, rather, reduced. Because the time course of ik remains unchanged, we concluded that the shortening of the action potential is not a result of a change in the time-dependent outward current. In the potential range of the plateau, the amplitude of the slow inward current is not affected by hpoxia. Its time constant of inactivation appears slightly decreased. The prolongation of the action potential by epinephrine during hypoxia is accompanied by an increase in the slow inward current. As a result of these studies, we conclude that the shortening of the cardiac action potential in the early stage of hypoxia results from an increase in K+ outward background current.

摘要

为了探究缺氧时心脏动作电位缩短的潜在机制,我们使用单蔗糖间隙电压钳技术研究了缺氧对猫乳头肌和小梁肌离子电流的影响。对于高于-70 mV的电位,缺氧会导致非时间依赖性外向电流增加。尾电流的变化表明,时间依赖性外向电流并未增加,反而减少。由于Ik的时间进程保持不变,我们得出结论,动作电位的缩短不是时间依赖性外向电流变化的结果。在平台期的电位范围内,缓慢内向电流的幅度不受缺氧影响。其失活时间常数似乎略有降低。缺氧时肾上腺素使动作电位延长,同时伴有缓慢内向电流增加。这些研究结果表明,缺氧早期心脏动作电位的缩短是由于K+外向背景电流增加所致。

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