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新型抗心律失常化合物AFD - 21和AFD - 19对豚鼠心脏分离的乳头肌和单个心室肌细胞的电生理效应

Electrophysiological effects of AFD-21 and AFD-19, new antiarrhythmic compounds on papillary muscles and single ventricular myocytes isolated from guinea-pig hearts.

作者信息

Kodama I, Kamiya K, Kawamura T, Suzuki R, Toyama J

机构信息

Department of Circulation and Respiration, Nagoya University, Japan.

出版信息

Br J Pharmacol. 1990 Dec;101(4):803-8. doi: 10.1111/j.1476-5381.1990.tb14161.x.

Abstract
  1. The effects of AFD-21, a newly synthesized antiarrhythmic compound, and AFD-19, its active metabolite, on transmembrane action potentials were examined in right ventricular papillary muscles and single ventricular myocytes isolated from guinea-pig hearts. 2. In papillary muscles, AFD-21 10(-5) M caused a slight prolongation of action potential duration (APD), while AFD-19 above 10(-6) M shortened APD in a dose-dependent manner. 3. Both AFD-21 and AFD-19 above 10(-6) M caused a significant and dose-dependent decrease in the maximum upstroke velocity (Vmax) of the action potential without affecting the resting membrane potential. 4. In the presence of AFD-21 or AFD-19, trains of stimuli at rates greater than or equal to 0.2 Hz led to an exponential decline in Vmax. This use-dependent block was enhanced at higher stimulation frequencies. A time constant for the recovery of Vmax from the use-dependent block was 2.9 s for AFD-21 and 3.6s for AFD-19. 5. The curves relating membrane potential and Vmax were shifted by AFD-21 (10(-5) M), or AFD-19 (10(-5) M) to the direction of more negative potentials by 5.3 mV and 5.1 mV respectively. 6. In single ventricular myocytes treated with AFD-21 (10(-5) M) or AFD-19 (10(-5) M), Vmax of test action potentials preceded by conditioning clamp pulses to 0 mV was decreased progressively as the clamp pulse duration was prolonged. 7. These findings suggest that both AFD-21 and AFD-19 have use- and voltage-dependent inhibitory action on the sodium channel by binding to the channel during its inactivated state, and that the unbinding rate is comparable to that of Class I antiarrhythmic drugs with intermediate kinetics.
摘要
  1. 在从豚鼠心脏分离出的右心室乳头肌和单个心室肌细胞中,研究了新合成的抗心律失常化合物AFD - 21及其活性代谢物AFD - 19对跨膜动作电位的影响。2. 在乳头肌中,10(-5) M的AFD - 21导致动作电位持续时间(APD)略有延长,而高于10(-6) M的AFD - 19以剂量依赖性方式缩短APD。3. 高于10(-6) M的AFD - 21和AFD - 19均导致动作电位的最大上升速度(Vmax)显著且剂量依赖性降低,而不影响静息膜电位。4. 在存在AFD - 21或AFD - 19的情况下,频率大于或等于0.2 Hz的刺激序列导致Vmax呈指数下降。这种使用依赖性阻滞在较高刺激频率下增强。AFD - 21使Vmax从使用依赖性阻滞中恢复的时间常数为2.9秒,AFD - 19为3.6秒。5. 与膜电位和Vmax相关的曲线分别被10(-5) M的AFD - 21或10(-5) M的AFD - 19向更负电位方向移动了5.3 mV和5.1 mV。6. 在接受10(-5) M的AFD - 21或10(-5) M的AFD - 19处理的单个心室肌细胞中,在以0 mV进行条件钳制脉冲之前的测试动作电位的Vmax随着钳制脉冲持续时间的延长而逐渐降低。7. 这些发现表明,AFD - 21和AFD - 19在钠通道处于失活状态时通过与其结合而对钠通道具有使用和电压依赖性抑制作用,并且其解离速率与具有中间动力学的I类抗心律失常药物相当。

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