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氯非铵及其叔同系物对大鼠心室钾电流的选择性抑制作用。

Selective inhibition of potassium currents in rat ventricle by clofilium and its tertiary homolog.

作者信息

Castle N A

机构信息

Department of Anesthesia Research Laboratories, Brigham and Women's Hospital, Boston, Massachusetts.

出版信息

J Pharmacol Exp Ther. 1991 Apr;257(1):342-50.

PMID:2019997
Abstract

The effects of clofilium and its tertiary homolog, LY97119 (LY), on K+ currents in isolated ventricular myocytes from adult rat were examined using the whole-cell patch-clamp technique. Acute exposure (less than 30 min) to high concentrations of clofilium (30-100 microM) produced a slowly developing reduction in the peak of the transient outward current (Ito) and an apparent increase in the rate of current inactivation. In addition, inhibition exhibited a marked dependence on the frequency of stimulation (i.e., use-dependent inhibition). For "short" exposure times (i.e., less than 30 min), steady-state inhibition was not attained. Therefore, myocytes were preincubated with clofilium for at least 3 hr before use. Under these conditions, the median inhibitory concentration for steady-state use-dependent inhibition of Ito was 0.5 microM. Recovery of Ito from use-dependent inhibition followed a biexponential time course; tau fast = 75 msec, tau slow = 17 sec. The relative magnitude of the slow component (but not its time constant) increased with higher clofilium concentrations. LY, like clofilium, also induced a time-dependent inhibition of Ito (median inhibiting concentration 0.9 microM). However, unlike clofilium, steady state with LY was reached within 5 min. Furthermore, LY (3 microM) produced very little use-dependent inhibition (29% at 1 Hz compared with 92% for clofilium). This is possibly due to a "fast" unbinding rate upon repolarization (tau = 1.8 s). In contrast to clofilium, LY (1-10 microM) also inhibited the inward rectifier (IK1). The present results suggest that inhibition of Ito may contribute to clofilium's class III antiarrhythmic action.

摘要

采用全细胞膜片钳技术,研究了氯非铵及其叔同系物LY97119(LY)对成年大鼠离体心室肌细胞钾电流的影响。急性暴露(少于30分钟)于高浓度氯非铵(30 - 100微摩尔)会使瞬时外向电流(Ito)峰值缓慢降低,并使电流失活速率明显增加。此外,抑制作用表现出对刺激频率的显著依赖性(即使用依赖性抑制)。对于“短”暴露时间(即少于30分钟),未达到稳态抑制。因此,在使用前将心肌细胞用氯非铵预孵育至少3小时。在这些条件下,Ito稳态使用依赖性抑制的半数抑制浓度为0.5微摩尔。Ito从使用依赖性抑制中的恢复遵循双指数时间进程;快速时间常数(tau fast) = 75毫秒,慢速时间常数(tau slow) = 17秒。随着氯非铵浓度升高,慢速成分的相对大小增加(但时间常数不变)。LY与氯非铵一样,也诱导Ito的时间依赖性抑制(半数抑制浓度为0.9微摩尔)。然而,与氯非铵不同,LY在5分钟内达到稳态。此外,LY(3微摩尔)产生的使用依赖性抑制非常小(1赫兹时为29%,而氯非铵为92%)。这可能是由于复极化时“快速”的解离速率(时间常数tau = 1.8秒)。与氯非铵相反,LY(1 - 10微摩尔)也抑制内向整流钾电流(IK1)。目前的结果表明,Ito的抑制可能有助于氯非铵的Ⅲ类抗心律失常作用。

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