Voltage- and frequency-dependent modulation of L-type Ca2+ channel by MPC-1304, a novel calcium antagonist in guinea-pig hearts.

A Sunami, T Kanno, A Kanda
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Abstract

The electrophysiological effects of MPC-1304, a novel calcium antagonist, were examined using the conventional microelectrode and whole-cell patch-clamp techniques in guinea-pig hearts. MPC-1304, at 100 nM or higher concentrations, produced a dose-dependent reduction in the action potential duration of guinea-pig papillary muscles, without changes in resting membrane potentials and maximum rate of rise of action potentials. In guinea-pig ventricular myocytes, MPC-1304 (1-100 nM) dose-dependently depressed the initial inward currents induced by depolarizing pulses from a holding potential of -30 mV in the external Tyrode solution, as did nifedipine, whereas the late outward current was not changed by MPC-1304. In the presence of 100 nM of MPC-1304 or 100 nM of nifedipine, the first depolarizing pulse from a holding potential of -80 mV caused a depression of the isolated L-type Ca2+ current (I(Ca)) by 29.5 % and 29.4 % of the control, respectively (tonic block), and successive pulses further suppressed I(Ca) in a use-dependent manner (use-dependent block). The degree of steady state use-dependent block of I(Ca) by 100 nM of MPC-1304 was 25.5 % at the stimulus frequency of 1 Hz and further increased to 34.0 % at 2 Hz (frequency-dependent block), which were significantly larger than those by 100 nM of nifedipine at both frequencies. The onset rate of use-dependent block by 100 nM MPC-1304 was significantly smaller than that by 100 nM nifedipine. MPC-1304 (100 nM) and nifedipine (100 nM) shifted the steady state inactivation curve of I(Ca) toward the negative potential by 3.3 mV and 9.1 mV in the mid-potential of the curve, respectively. The estimated dissociation constants of MPC-1304 were 137.7 and 49.9 nM for the resting and inactivated states of the L-type Ca2+ channel, respectively, and those of nifedipine were 113.9 and 18.1 nM, respectively. We conclude that MPC-1304 suppress the L-type Ca2+ channel with slow kinetics in a voltage- and frequency-dependent manner, which might be caused by its high affinity to the activated as well as to the inactivated state of the channel.

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一种新的钙拮抗剂MPC-1304在豚鼠心脏中对l型Ca2+通道的电压和频率依赖性调制。
采用常规微电极和全细胞膜片钳技术,研究了新型钙拮抗剂MPC-1304在豚鼠心脏中的电生理效应。在100 nM或更高浓度的MPC-1304下,豚鼠乳头肌的动作电位持续时间呈剂量依赖性减少,而静息膜电位和动作电位的最大上升速率没有变化。在豚鼠心室肌细胞中,MPC-1304 (1-100 nM)与硝苯地平一样,剂量依赖性地抑制了外部Tyrode溶液中-30 mV保持电位的去极化脉冲诱导的初始向内电流,而MPC-1304不改变后期向外电流。在100 nM的MPC-1304或100 nM的硝苯地平存在下,来自-80 mV保持电位的第一个去极化脉冲分别使分离的l型Ca2+电流(I(Ca))下降29.5%和29.4%(强直阻断),并且连续的脉冲以使用依赖的方式进一步抑制I(Ca)(使用依赖阻断)。100 nM的MPC-1304对I(Ca)的稳态使用依赖阻滞程度在刺激频率为1 Hz时为25.5%,在刺激频率为2 Hz时为34.0%(频率依赖阻滞),明显大于100 nM的硝苯地平在两个频率下的作用。100 nM MPC-1304的用药依赖性阻滞起效率明显小于100 nM硝苯地平。MPC-1304 (100 nM)和硝苯地平(100 nM)使I(Ca)稳态失活曲线中电位分别向负电位偏移3.3 mV和9.1 mV。MPC-1304在l型Ca2+通道静息和失活状态下的解离常数分别为137.7和49.9 nM,硝苯地平的解离常数分别为113.9和18.1 nM。我们得出结论,MPC-1304以电压和频率依赖的方式抑制l型Ca2+通道,这可能是由于其对通道激活和失活状态的高亲和力引起的。
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