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I类抗心律失常药物对兔和大鼠心室负性肌力作用中钠钙交换改变的可能参与。

Possible involvement of altered Na+ -Ca2+ exchange in negative inotropic effects of class I antiarrhythmic drugs on rabbit and rat ventricles.

作者信息

Ito K, Nagafuchi K, Taga A, Yorikane R, Koike H

机构信息

Department of Veterinary Pharmacology, Faculty of Agriculture, Miyazaki University, Japan.

出版信息

J Cardiovasc Pharmacol. 1996 Mar;27(3):355-61. doi: 10.1097/00005344-199603000-00007.

Abstract

We investigated the way in which Na+ channel blocking class I antiarrhythmic drugs, lidocaine (30 mu M), flecainide (30 mu M), and RS-2135 (100 mu M) affected contractions elicited by several protocols in rat and rabbit ventricular strips. Rabbit ventricles showed a positive force-frequency relation, and antiarrhythmic drugs inhibited the contraction, flattening the force-frequency curve. In contrast, rat ventricles showed a negative force-frequency relation, and the drugs shifted the force-frequency curve downward. Rapid-cooling contracture (RCC) also showed a positive or negative dependence on the frequency of preceding stimulation in rabbit or rat ventricles, respectively. All drugs inhibited the RCC, suggesting that they reduced the Ca2+ content in the sarcoplasmic reticulum. Ryanodine (1 mu M) abolished the RCC in both muscles and the contraction in rat muscles, but partially decreased contractions at high frequencies in rabbit ventricles. Antiarrhythmic drugs caused a further inhibition of contractions in the presence of ryanodine in rabbit ventricles. These results indicate that inhibition of Na+ channels by antiarrhythmic drugs alters Na+ -Ca2+ exchange, resulting in a decrease in the Ca2+ content in the sarcoplasmic reticulum (SR) and the Ca2+ entry through the exchanger.

摘要

我们研究了I类抗心律失常药物(钠通道阻滞剂)利多卡因(30 μM)、氟卡尼(30 μM)和RS - 2135(100 μM)对大鼠和兔心室肌条多种刺激方案所诱发收缩的影响。兔心室表现出正性力 - 频率关系,抗心律失常药物抑制收缩,使力 - 频率曲线变平。相反,大鼠心室表现出负性力 - 频率关系,药物使力 - 频率曲线下移。快速冷却挛缩(RCC)在兔或大鼠心室中也分别表现出对先前刺激频率的正性或负性依赖性。所有药物均抑制RCC,提示它们降低了肌浆网中的Ca2 +含量。Ryanodine(1 μM)消除了两种肌肉中的RCC以及大鼠肌肉中的收缩,但在兔心室中仅部分降低了高频时的收缩。在兔心室中,抗心律失常药物在存在ryanodine的情况下进一步抑制收缩。这些结果表明,抗心律失常药物对钠通道的抑制改变了Na + - Ca2 +交换,导致肌浆网(SR)中Ca2 +含量以及通过交换体的Ca2 +内流减少。

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