Spinelli W, Moubarak I F, Parsons R W, Colatsky T J
Wyeth-Ayerst Research, Princeton, NJ.
Cardiovasc Res. 1993 Sep;27(9):1580-91. doi: 10.1093/cvr/27.9.1580.
The objectives were (a) to evaluate the effects of WAY-123,398, a new class III antiarrhythmic agent, on the action potential of canine Purkinje fibres in comparison with dofetilide, E-4031, and dl-sotalol, and (b) to characterise the mechanism of the class III action by studying its effects on several ionic currents in isolated cat myocytes.
Transmembrane potentials in Purkinje fibres were studied with standard microelectrodes filled with 3M KCl. Myocytes were isolated by enzymatic disaggregation with collagenase and current recordings were obtained by voltage clamp with either the nystatin perforated patch technique or the usual whole cell configuration.
WAY-123,398 prolonged action potential duration (APD) in Purkinje fibres and in cat ventricular myocytes without altering other variables of the action potential; in Purkinje fibres the concentration producing a 20% prolongation of APD-60 mV at a basic cycle length of 1000 ms was 0.2 microM. After depolarising voltage steps, the delayed rectifier (IK) peak tail currents in cat myocytes were blocked with IC50 = 0.1 microM. The block was unaffected by varying the duration (200 to 500 ms) or the frequency (0.4 to 2.5 Hz) of the depolarising steps. A much higher concentration of WAY-123,398 (10 microM) did not have effects on the L type Ca current (ICa-L), and on the inward rectifier (IK1) and transient outward (I(to)) K currents.
The results indicate that WAY-123,398 is an effective and specific class III agent devoid of class I activity, and suggest that WAY-123,398 prolongs cardiac repolarisation by specifically blocking the delayed rectifier current (IK). The block was unchanged over a range of frequencies and duration of depolarisation, showing no evidence of "reverse use dependence" of block.
(a)与多非利特、E-4031和消旋索他洛尔相比,评估新型III类抗心律失常药物WAY-123,398对犬浦肯野纤维动作电位的影响;(b)通过研究其对分离的猫心肌细胞几种离子电流的影响来阐明III类作用机制。
用充满3M氯化钾的标准微电极研究浦肯野纤维的跨膜电位。用胶原酶酶解分离心肌细胞,采用制霉菌素穿孔膜片钳技术或常规全细胞模式通过电压钳记录电流。
WAY-123,398可延长浦肯野纤维和猫心室肌细胞的动作电位时程(APD),而不改变动作电位的其他参数;在浦肯野纤维中,在基础周期长度为1000 ms时使APD-60 mV延长20%的浓度为0.2 μM。去极化电压阶跃后,猫心肌细胞中的延迟整流钾电流(IK)峰值尾电流被阻断,IC50 = 0.1 μM。该阻断不受去极化阶跃持续时间(200至500 ms)或频率(0.4至2.5 Hz)变化的影响。更高浓度的WAY-123,398(10 μM)对L型钙电流(ICa-L)、内向整流钾电流(IK1)和瞬时外向钾电流(I(to))无影响。
结果表明WAY-123,398是一种有效且特异性的III类药物,无I类活性,提示WAY-123,398通过特异性阻断延迟整流钾电流(IK)延长心脏复极。该阻断在一系列去极化频率和持续时间范围内不变,未显示阻断的“反向使用依赖性”证据。