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MS-551和E-4031对兔心室肌细胞动作电位及延迟整流钾电流的不同作用

Differential effects of MS-551 and E-4031 on action potentials and the delayed rectifier K+ current in rabbit ventricular myocytes.

作者信息

Cheng J, Kamiya K, Kodama I, Toyama J

机构信息

Department of Circulation, Nagoya University, Japan.

出版信息

Cardiovasc Res. 1996 Jun;31(6):963-74.

PMID:8759253
Abstract

OBJECTIVE

The frequency-dependent effects of MS-551 on the action potential duration (APD) and the underlying ionic mechanisms were investigated in comparison with those of E-4031.

METHODS

Whole-cell clamp techniques were used to study action potentials and ionic currents in enzymatically isolated rabbit ventricular myocytes.

RESULTS

The frequency-response obtained within the range of 0.1 to 3.3 Hz was different for MS-551 and E-4031. The APD prolongation by MS-551 (10 microM) was significant at 0.5-3.3 Hz, whereas that by E-4031 (1 microM) was significant at 0.1-1.0 Hz. The prolongation by MS-551 (10 microM) of APD of a test action potential, which was preceded by a train of 1.0 Hz stimulation, decreased progressively as the rest duration increased, whereas that by E-4031 (1 microM) remained at the same level. Both MS-551 (10 microM) and E-4031 (1 microM) significantly decreased IK, but showed no effects on the transient outward current (Ito) and the inward rectifier K+ current (IKl). The development of the block on IK and the recovery from the block by MS-551 were voltage dependent. At a holding potential of -50 mV, MS-551 reduced the tail current to a similar extent (21-34%, n = 6) across all the tested durations of the depolarizing pulses to +10 mV, whereas at -75 mV, the intensity of the block progressively increased as the durations of depolarizing pulses were prolonged. The recovery from the block by MS-551 was absent at -50 mV, but occurred at -75 mV with a time constant of 577 +/- 179 ms (n = 6). The development of the block on IK by E-4031 was voltage and time independent. No recovery from the block was observed for E-4031 at either -50 or -75 mV.

CONCLUSIONS

These findings suggest that MS-551 produces frequency-dependent class III action, presumably due to the voltage-dependent binding and unbinding to the IK channels. The reverse frequency dependence of class III action by E-4031 cannot be explained by the effects on IK.

摘要

目的

与E - 4031相比较,研究MS - 551对动作电位时程(APD)的频率依赖性效应及其潜在的离子机制。

方法

采用全细胞膜片钳技术研究酶解分离的兔心室肌细胞的动作电位和离子电流。

结果

MS - 551和E - 4031在0.1至3.3 Hz范围内获得的频率响应不同。MS - 551(10 microM)引起的APD延长在0.5 - 3.3 Hz时显著,而E - 4031(1 microM)引起的APD延长在0.1 - 1.0 Hz时显著。在1.0 Hz刺激序列之后的测试动作电位,其APD被MS - 551(10 microM)延长,随着静息时间增加而逐渐降低,而E - 4031(1 microM)引起的延长保持在相同水平。MS - 551(10 microM)和E - 4031(1 microM)均显著降低IK,但对瞬时外向电流(Ito)和内向整流钾电流(IKl)无影响。MS - 551对IK的阻断发展及其从阻断中的恢复是电压依赖性的。在 - 50 mV的钳制电位下,对于所有测试的到 + 10 mV的去极化脉冲持续时间,MS - 551将尾电流降低到相似程度(21 - 34%,n = 6),而在 - 75 mV时,随着去极化脉冲持续时间延长,阻断强度逐渐增加。MS - 551在 - 50 mV时无从阻断中的恢复,但在 - 75 mV时发生恢复,时间常数为577 +/- 179 ms(n = 6)。E - 4031对IK的阻断发展与电压和时间无关。在 - 50 mV或 - 75 mV时均未观察到E - 4031从阻断中的恢复。

结论

这些发现表明,MS - 551产生频率依赖性的Ⅲ类作用,可能是由于其对IK通道的电压依赖性结合和解离。E - 4031的Ⅲ类作用的反向频率依赖性不能用其对IK的影响来解释。

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