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磷酸丙吡胺对犬心室肌和浦肯野纤维的电生理作用。

Electrophysiological actions of disopyramide phosphate on canine ventricular muscle and purkinje fibers.

作者信息

Kus T, Sasyniuk B I

出版信息

Circ Res. 1975 Dec;37(6):844-54. doi: 10.1161/01.res.37.6.844.

Abstract

Disopyramide phosphate is a new antiarrhythmic drug that has been shown to possess significant antiarrhythmic effects in animals and man. In the present investigation, the effects of 2, 5, and 10 mug/ml of disopyramide phosphate were studied on the electrophysiological properties of canine Purkinje fibers and ventricular muscle superfused in vitro. Transmembrane action potentials were recorded from Purkinje fibers in the region of maximum action potential duration (gate), from Purkinje fibers proximal and distal to the gate, and from ventricular muscle. Disopyramide phosphate produced a concentration-dependent decrease in the slope of phase 4 diastolic depolarization of spontaneously beating Purkinje fibers. In all electrically stimulated fibers, the drug decreased the amplitude and the maximum upstroke velocity of the action potential. This depression of phase 0 characteristics was accompanied by a decrease in conduction velocity. In Purkinje fibers located at the gate, a concentration-dependent parallel shift to the right and a depression of the maximum of the membrane responsiveness curve occurred. Effects on action potential duration were variable. Repolarization was altered so that action potentials with dissimilar durations recorded from sites proximal to, at, and distal to the gate became equal. The total action potential duration and the effective refractory period of gate Purkinje fibers were prolonged, but the change in action potential duration was always greater than the change in effective refractory period so that the ratio of the change in duration to the change in refractory period was always greater than one.

摘要

磷酸丙吡胺是一种新型抗心律失常药物,已证明在动物和人体中具有显著的抗心律失常作用。在本研究中,研究了2、5和10微克/毫升磷酸丙吡胺对体外灌流的犬浦肯野纤维和心室肌电生理特性的影响。从动作电位持续时间最长区域(门控部位)的浦肯野纤维、门控部位近端和远端的浦肯野纤维以及心室肌记录跨膜动作电位。磷酸丙吡胺使自发搏动的浦肯野纤维4期舒张期去极化斜率呈浓度依赖性降低。在所有电刺激的纤维中,该药物降低了动作电位的幅度和最大上升速度。0期特性的这种抑制伴随着传导速度的降低。在门控部位的浦肯野纤维中,出现了浓度依赖性的向右平行移位以及膜反应性曲线最大值的降低。对动作电位持续时间的影响是可变的。复极化发生改变,使得从门控部位近端、门控部位以及门控部位远端记录的不同持续时间的动作电位变得相等。门控浦肯野纤维的总动作电位持续时间和有效不应期延长,但动作电位持续时间的变化总是大于有效不应期的变化,因此持续时间变化与不应期变化的比值总是大于1。

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