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奎尼丁和利多卡因对蛙心室动作电位及膜电流的影响。

Effects of quinidine and lidocaine on action potential and membrane currents of frog ventricles.

作者信息

Su M J, Morad M

机构信息

Pharmacological Institute, College of Medicine, National Taiwan University, Taipei, Republic of China.

出版信息

Proc Natl Sci Counc Repub China B. 1987 Oct;11(4):362-9.

PMID:2452453
Abstract

The effects of quinidine and lidocaine on frog ventricle were studied by using a single sucrose gap voltage clamp technique. In Ca2+-Ringer, quinidine (80 microM) caused slight prolongation of action potential duration (APD50) and significant inhibition of twitch tension. Lidocaine (40 microM) shortened APD50 without significant effect on twitch tension. In tetrodotoxin (TTX)-treated preparations, quinidine caused significant prolongation of APD50 from 529 +/- 19 msec to 597 +/- 11 msec, (n = 9) and inhibition of twitch tension, but lidocaine did not affect APD50 and twitch tension. Under voltage clamp condition, quinidine reduced peak inward current in the absence of TTX, but enhanced peak inward current in the presence of TTX. The steady state outward current was increased by quinidine. Lidocaine didn't affect peak inward current in the absence or in the presence of TTX. Membrane current through the inward rectifier (IK1) was slightly increased by lidocaine, but significantly inhibited by quinidine. The enhancement of peak inward current by quinidine was retarded or reversed in preparation bathed with Sr2+-Ringer. When Ni2+ was added to a preparation bathed in Ca2+-Ringer, an inhibition of calcium inward current and action potential plateau was observed. The spike amplitude of the action potential was, however, unaffected by Ni2+. In this Ni2+-treated preparation, lidocaine (20 microM) caused significant shortening of APD50 without significant effect on action potential amplitude. The shortening of APD50 was associated with a slight increase of steady state outward current. The increase of steady state outward current by lidocaine was absent in the TTX-treated preparation.(ABSTRACT TRUNCATED AT 250 WORDS)

摘要

采用单蔗糖间隙电压钳技术研究了奎尼丁和利多卡因对蛙心室的影响。在钙离子林格液中,奎尼丁(80微摩尔)使动作电位时程(APD50)稍有延长,并显著抑制收缩张力。利多卡因(40微摩尔)缩短APD50,但对收缩张力无显著影响。在经河豚毒素(TTX)处理的标本中,奎尼丁使APD50从529±19毫秒显著延长至597±11毫秒(n = 9),并抑制收缩张力,但利多卡因对APD50和收缩张力无影响。在电压钳条件下,奎尼丁在无TTX时降低内向电流峰值,但在有TTX时增强内向电流峰值。奎尼丁使稳态外向电流增加。利多卡因在无或有TTX时均不影响内向电流峰值。利多卡因使通过内向整流器的膜电流(IK1)稍有增加,但奎尼丁使其显著抑制。在锶离子林格液中浸泡的标本中,奎尼丁对内向电流峰值的增强作用受到阻滞或逆转。当向钙离子林格液浸泡的标本中加入镍离子时,观察到钙内向电流和动作电位平台期受到抑制。然而,动作电位的锋电位幅度不受镍离子影响。在这种经镍离子处理的标本中,利多卡因(20微摩尔)使APD50显著缩短,但对动作电位幅度无显著影响。APD50的缩短与稳态外向电流稍有增加有关。在经TTX处理的标本中,利多卡因未使稳态外向电流增加。(摘要截短于250字)

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