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细胞外pH值改变豚鼠心室肌细胞中慢心律对钠通道的阻滞作用。

External pH modifies sodium channel block by mexiletine in guinea pig ventricular myocytes.

作者信息

Ono M, Sunami A, Sawanobori T, Hiraoka M

机构信息

Department of Cardiovascular Diseases, Tokyo Medical and Dental University, Japan.

出版信息

Cardiovasc Res. 1994 Jul;28(7):973-9. doi: 10.1093/cvr/28.7.973.

Abstract

OBJECTIVE

The aim was to examine the kinetics and the degree of Na+ channel block by mexiletine under different values of external pH to produce a fractional variation of charged and uncharged forms of mexiletine.

METHODS

The Na+ current (INa) was recorded using the patch clamp technique of whole cell configuration in guinea pig ventricular myocytes.

RESULTS

In the presence of 20 microM mexiletine, INa block developed with a single exponential when depolarising pulse trains of 5 ms were applied to -30 mV from a holding potential of -100 mV at a diastolic interval of 500 ms. At the 30th pulse, the degree of use dependent block of INa was 12.3(SEM 0.41)% (n = 4) of the 1st pulse. When the duration of pulses was prolonged to 200 ms, the degree of use dependent block was increased to 25.6(4.7)%, which had the block development of two exponentials with fast and slow rate constants. The slow component at the 200 ms pulses was comparable to the single exponential component at the 5 ms pulses. Drug binding to the inactivated channel was increased by external alkalinisation, which increased the uncharged form of mexiletine, whereas the block at the 5 ms pulses was not affected by the change of external pH.

CONCLUSIONS

Uncharged mexiletine caused use dependent block with a fast rate constant having affinity for the inactivated state of the Na+ channel, while the charged form produced a slow component of the block having affinity for the activated state. Therefore the fraction of the uncharged to the charged form of mexiletine could be one of the important determinants in the development and mechanism of INa block.

摘要

目的

研究在不同外部pH值条件下美西律对钠通道的阻滞动力学及程度,以产生美西律带电和不带电形式的分数变化。

方法

采用全细胞膜片钳技术记录豚鼠心室肌细胞的钠电流(INa)。

结果

在存在20μM美西律的情况下,当从 -100 mV的静息电位以500 ms的舒张间期施加5 ms的去极化脉冲串至 -30 mV时,INa阻滞呈单指数发展。在第30个脉冲时,INa的使用依赖性阻滞程度为第一个脉冲的12.3(标准误0.41)%(n = 4)。当脉冲持续时间延长至200 ms时,使用依赖性阻滞程度增加至25.6(4.7)%,其阻滞发展具有快速和慢速速率常数的两个指数。200 ms脉冲时的慢成分与5 ms脉冲时的单指数成分相当。外部碱化增加了药物与失活通道的结合,这增加了美西律的不带电形式,而5 ms脉冲时的阻滞不受外部pH变化的影响。

结论

不带电的美西律以快速速率常数引起使用依赖性阻滞,对钠通道的失活状态具有亲和力,而带电形式产生对激活状态具有亲和力的阻滞慢成分。因此,美西律不带电形式与带电形式的比例可能是INa阻滞发展和机制的重要决定因素之一。

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