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交感神经激活、心室复极化与Ikr阻滞:对钾通道阻滞剂抗纤颤疗效的影响。

Sympathetic activation, ventricular repolarization and Ikr blockade: implications for the antifibrillatory efficacy of potassium channel blocking agents.

作者信息

Vanoli E, Priori S G, Nakagawa H, Hirao K, Napolitano C, Diehl L, Lazzara R, Schwartz P J

机构信息

Istituto di Clinica Medica Generale e Terapia Medica, University of Milan, Italy.

出版信息

J Am Coll Cardiol. 1995 Jun;25(7):1609-14. doi: 10.1016/0735-1097(95)00046-7.

Abstract

OBJECTIVES

The aim of the present study was to test, in vivo and in vitro, the influence of adrenergic activation on action potential prolongation induced by the potassium channel blocking agent d-sotalol.

BACKGROUND

d-Sotalol is not effective against myocardial ischemia-dependent ventricular fibrillation in the presence of elevated sympathetic activity. Most potassium channel blockers, such as d-sotalol, affect only one of the two components of Ik (Ikr) but not the other (Iks). Iks is activated by isoproterenol. An unopposed activation of Iks might account for the loss of anti-fibrillatory effect by d-sotalol in conditions of high sympathetic activity.

METHODS

In nine anesthetized dogs we tested at constant heart rate (160 to 220 beats/min) the influences of left stellate ganglion stimulation on the monophasic action potential prolongation induced by d-sotalol. In two groups of isolated guinea pig ventricular myocytes we tested the effect of isoproterenol (10(-9) mol/liter) on the action potential duration at five pacing rates (from 0.5 to 2.5 Hz) in the absence (n = 6) and in the presence (n = 8) of d-sotalol.

RESULTS

In control conditions, both in vivo and in vitro, adrenergic stimulation did not significantly change action potential duration. d-Sotalol prolonged both monophasic action potential duration in dogs and action potential duration of guinea pig ventricular myocytes by 19% to 24%. Adrenergic activation, either left stellate ganglion stimulation in vivo or isoproterenol in vitro, reduced by 40% to 60% the prolongation of action potential duration produced by d-sotalol.

CONCLUSIONS

Sympathetic activation counteracts the effects of potassium channel blockers on the duration of repolarization and may impair their primary antifibrillatory mechanism. An intriguing clinical implication is that potassium channel blockers may not offer effective protection from malignant ischemic arrhythmias that occur in a setting of elevated sympathetic activity.

摘要

目的

本研究旨在在体内和体外测试肾上腺素能激活对钾通道阻滞剂d - 索他洛尔诱导的动作电位延长的影响。

背景

在交感神经活动增强的情况下,d - 索他洛尔对心肌缺血依赖性室颤无效。大多数钾通道阻滞剂,如d - 索他洛尔,仅影响Ik的两个成分之一(Ikr),而不影响另一个(Iks)。Iks由异丙肾上腺素激活。Iks的无对抗激活可能解释了在高交感神经活动状态下d - 索他洛尔抗纤颤作用的丧失。

方法

在9只麻醉犬中,我们在恒定心率(160至220次/分钟)下测试了左星状神经节刺激对d - 索他洛尔诱导的单相动作电位延长的影响。在两组分离的豚鼠心室肌细胞中,我们测试了异丙肾上腺素(10⁻⁹摩尔/升)在无d - 索他洛尔(n = 6)和有d - 索他洛尔(n = 8)存在的情况下,在五种起搏频率(0.5至2.5赫兹)下对动作电位持续时间的影响。

结果

在对照条件下,无论是在体内还是体外,肾上腺素能刺激均未显著改变动作电位持续时间。d - 索他洛尔使犬的单相动作电位持续时间和豚鼠心室肌细胞的动作电位持续时间延长了19%至24%。肾上腺素能激活,无论是体内的左星状神经节刺激还是体外的异丙肾上腺素,都使d - 索他洛尔产生的动作电位持续时间延长减少了40%至60%。

结论

交感神经激活抵消钾通道阻滞剂对复极持续时间的影响,并可能损害其主要的抗纤颤机制。一个有趣的临床意义是,钾通道阻滞剂可能无法有效预防在交感神经活动增强情况下发生的恶性缺血性心律失常。

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