Sato T, Wu B, Kiyosue T, Arita M
Department of Physiology, Oita Medical University, School of Medicine, Japan.
Naunyn Schmiedebergs Arch Pharmacol. 1994 Aug;350(2):167-73. doi: 10.1007/BF00241092.
We examined the effects of cibenzoline, a new class Ia antiarrhythmic drug, on various membrane ionic currents and action potentials of guinea-pig single ventricular cells, using patch clamp techniques in whole-cell configuration. Action potentials and the membrane currents were evoked at a clamping rate of 0.2 Hz, and all experiments were performed at 32-33 degrees C. 1) Cibenzoline (5, 10 and 30 microM) decreased the Na+ current (INa), in a concentration-dependent manner. The concentration of the half-maximal inhibition (Kd) for INa was estimated to be 7.8 microM. 2) In addition to the inhibition of INa, this drug (5, 10, and 30 microM) decreased, in a concentration-dependent manner, all other membrane currents examined, such as L-type Ca2+ current (ICa), delayed rectifier K+ current (IK), and inward rectifier K+ current (IK1). The Kd (apparent dissociation constant) values were 14.4 microM for ICa, 23.0 microM for IK, and 33.7 microM for IK1 respectively. 3) Cibenzoline (5, 10, and 30 microns) significantly shortened the action potential duration measured at both 30% and 90% repolarization without altering the resting membrane potential. From these findings, we conclude that apart from potent inhibitory effects on INa, cibenzoline possesses multiple blocking effects on other currents, e.g., ICa, IK and IK1, with a different potency (INa > ICa > IK > IK1) and with essentially the same efficacy. These effects may explain, at least in part, the alleged, potent antiarrhythmic effects of this drug.
我们采用全细胞膜片钳技术,研究了新型Ia类抗心律失常药物西苯唑啉对豚鼠单个心室肌细胞膜离子电流和动作电位的影响。动作电位和膜电流以0.2Hz的钳制频率诱发,所有实验均在32 - 33摄氏度下进行。1)西苯唑啉(5、10和30微摩尔)以浓度依赖性方式降低钠电流(INa)。INa的半数最大抑制浓度(Kd)估计为7.8微摩尔。2)除抑制INa外,该药物(5、10和30微摩尔)还以浓度依赖性方式降低所有其他检测的膜电流,如L型钙电流(ICa)、延迟整流钾电流(IK)和内向整流钾电流(IK1)。ICa、IK和IK1的Kd(表观解离常数)值分别为14.4微摩尔、23.0微摩尔和33.7微摩尔。3)西苯唑啉(5、10和30微米)显著缩短了在复极化30%和90%时测量的动作电位时程,而不改变静息膜电位。从这些发现中,我们得出结论,除了对INa有强大的抑制作用外,西苯唑啉对其他电流,如ICa、IK和IK1具有多种阻断作用,其效力不同(INa > ICa > IK > IK1)且基本疗效相同。这些作用至少可以部分解释该药物所谓的强大抗心律失常作用。