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代谢抑制对三种心肌细胞实验模型动作电位的比较效应。

Comparative effects of metabolic inhibition on the action potential from three experimental models of cardiac cells.

作者信息

Yamamoto T, Ruiz-Ceretti E, Schanne O F

出版信息

Can J Physiol Pharmacol. 1987 Feb;65(2):252-6. doi: 10.1139/y87-044.

Abstract

Because of conflicting reports on the basic mechanisms responsible for the action potential changes produced by hypoxia or metabolic inhibitors, we investigated the effect of 2,4-dinitrophenol, substrate deprivation, and 2-deoxy-D-glucose on three preparations of rat myocardium: adult and newborn ventricle and cultured cells derived from neonatal rats. The latter exhibit slow action potentials in contrast to the other two, which show fast action potentials. Cultured cells were insensitive to 2,4-dinitrophenol and substrate deprivation but were markedly inhibited by blocking of glycolysis. The action potential of adult cells was shortened in the three conditions tested but was most sensitive to blocking of oxidative phosphorylation, which abolished propagated electrical activity after 15 min of exposure. The response of newborn ventricle was intermediate between the other two. Our data indicated that as far as maintenance of the membrane electrical properties is concerned, the relative importance of different metabolic pathways varies with development after birth or with time in culture.

摘要

由于关于缺氧或代谢抑制剂所产生的动作电位变化的基本机制存在相互矛盾的报道,我们研究了2,4-二硝基苯酚、底物剥夺和2-脱氧-D-葡萄糖对三种大鼠心肌制剂的影响:成年和新生心室以及源自新生大鼠的培养细胞。与另外两种表现出快速动作电位的制剂相比,后者表现出缓慢动作电位。培养细胞对2,4-二硝基苯酚和底物剥夺不敏感,但通过阻断糖酵解受到显著抑制。在测试的三种条件下,成年细胞的动作电位均缩短,但对阻断氧化磷酸化最为敏感,暴露15分钟后可消除传播的电活动。新生心室的反应介于另外两者之间。我们的数据表明,就维持膜电特性而言,不同代谢途径的相对重要性随出生后的发育或培养时间而变化。

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