Morel N, Godfraind T
Laboratoire de Pharmacodynamie Générale et de Pharmacologie, Université Catholique de Louvain, Bruxelles, Belgium.
J Pharmacol Exp Ther. 1987 Nov;243(2):711-5.
Experiments were performed on isolated rat mesenteric arteries with the calcium-antagonistic dihydropyridine derivative PN 200-110 in order to examine how its time-dependent effect on K+-evoked contraction might be related to voltage sensitive binding. (+)-PN 200-110 is a potent blocker of the K+-contraction in mesenteric artery. Inhibition of the K+-contraction was time-dependent and dose-effect curves were shifted to the left with the duration of depolarization. The (-)-isomer of PN 200-110 was less potent than the (+)-isomer but its action was also time-dependent. (+)-[3H]PN 200-110 binding has been determined in arteries bathed in physiological or high K+-solutions. Nonspecific binding measured in the presence of 10(-6) M nifedipine was not different in polarized and in depolarized arteries but specific binding was increased markedly after 30 min of depolarization. Specific binding data were well fitted by one hyperbolic curve describing a one-to-one binding to a single class of sites. Maximum binding capacity was unchanged whereas apparent dissociation constant was significantly lower in depolarized arteries. Depolarization also shifted to the left displacement curves of (+)-[3H]PN 200-110 by (+)- and (-)-PN 200-110. These results indicate that time-dependent effect of dihydropyridines in vascular smooth muscle is related to increased affinity of depolarized arteries for those drugs, suggesting that calcium channels in vascular smooth muscle are modulated by membrane potential in a way similar to that reported for cardiac muscle.
为了研究钙拮抗二氢吡啶衍生物PN 200 - 110对钾离子诱发收缩的时间依赖性效应与电压敏感性结合之间的关系,对离体大鼠肠系膜动脉进行了实验。(+)-PN 200 - 110是肠系膜动脉中钾离子收缩的有效阻滞剂。钾离子收缩的抑制具有时间依赖性,并且随着去极化持续时间的延长,剂量效应曲线向左移动。PN 200 - 110的(-)-异构体效力低于(+)-异构体,但其作用也具有时间依赖性。已在生理溶液或高钾溶液中孵育的动脉中测定了(+)-[3H]PN 200 - 110的结合情况。在10(-6) M硝苯地平存在下测得的非特异性结合在极化和去极化动脉中无差异,但去极化30分钟后特异性结合显著增加。特异性结合数据能很好地用一条双曲线拟合,该双曲线描述了与单一类位点的一对一结合。最大结合容量未改变,而去极化动脉中的表观解离常数显著降低。去极化还使(+)-和(-)-PN 200 - 110对(+)-[3H]PN 200 - 110的置换曲线向左移动。这些结果表明,二氢吡啶在血管平滑肌中的时间依赖性效应与去极化动脉对这些药物亲和力的增加有关,提示血管平滑肌中的钙通道受膜电位调节的方式与心肌中报道的方式相似。