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邻异硫氰酸酯二氢吡啶(oNCS-DHP),一种长效、可逆的钙离子通道抑制剂。

o-Isothiocyanate dihydropyridine (oNCS-DHP), a long-acting, reversible inhibitor of the Ca++ channel.

作者信息

Kozlowski R, Ehrhard P, Fischli W, Osterrieder W, Holck M

出版信息

J Pharmacol Exp Ther. 1986 Sep;238(3):1084-91.

PMID:2427686
Abstract

The binding characteristics and pharmacological properties of o-isothiocyanate dihydropyridine [oNCS-DHP; 2,6-dimethyl-3,5-dicarbomethoxy-4-(2-isothiocyanatophenyl)-1, 4-dihydropyridine] were investigated in guinea pig heart and ileum. [3H]oNCS-DHP bound to a single population of high-affinity sites (Bmax = 107 fmol/mg of protein and Kd = 0.99 nM) in cardiac membranes, with a specificity characteristic of dihydropyridine receptors. After incubation of membranes with the tracer (0.5 nM), addition of excess nifedipine (1 microM) caused a dissociation of [3H]oNCS-DHP from its binding site. The reversibility of [3H]oNCS-DHP binding was confirmed by the lack of affinity labeling of cardiac membranes as determined by sodium dodecylsulfate-polyacrylamide gel electrophoresis. oNCS-DHP inhibited the inward Ca++ current of isolated guinea pig cardiac myocytes as determined in voltage-clamp experiments. In isolated perfused guinea pig hearts, oNCS-DHP caused a concentration-dependent increase in coronary artery flow and a decrease in left ventricular pressure. The effects of the highest concentration (0.3 microM) were still near maximal after a 1-h washout. Suppression of K+ depolarization-induced contractures of isolated ileal longitudinal muscle strips by oNCS-DHP remained maximal even after 5 h of washout. In all of the three biological test systems investigated, the Ca++ channel activator Bay K 8644 caused a complete and rapid reversal of the inhibitory effects of oNCS-DHP. Thus, it can be concluded that oNCS-DHP does not bind irreversibly to Ca++ channel dihydropyridine receptors in guinea pig heart and ileum. However, the o-isothiocyanatophenyl substituent on the dihydropyridine molecule confers upon the compound a very long duration of Ca++ channel blocking activity.

摘要

在豚鼠心脏和回肠中研究了邻异硫氰酸酯二氢吡啶[邻NCS-DHP;2,6-二甲基-3,5-二羧甲氧基-4-(2-异硫氰酸苯)-1,4-二氢吡啶]的结合特性和药理特性。[3H]邻NCS-DHP与心脏膜中单一群体的高亲和力位点结合(Bmax = 107 fmol/mg蛋白质,Kd = 0.99 nM),具有二氢吡啶受体的特异性特征。用示踪剂(0.5 nM)孵育膜后,加入过量硝苯地平(1 μM)导致[3H]邻NCS-DHP从其结合位点解离。十二烷基硫酸钠-聚丙烯酰胺凝胶电泳测定结果表明,心脏膜缺乏亲和标记,证实了[3H]邻NCS-DHP结合的可逆性。电压钳实验测定,邻NCS-DHP抑制了分离的豚鼠心肌细胞的内向Ca++电流。在分离的灌注豚鼠心脏中,邻NCS-DHP引起冠状动脉血流浓度依赖性增加和左心室压力降低。最高浓度(0.3 μM)作用1小时后冲洗,其效果仍接近最大值。即使冲洗5小时后,邻NCS-DHP对分离的回肠纵肌条K+去极化诱导挛缩的抑制作用仍最大。在所研究的所有三种生物测试系统中,Ca++通道激活剂Bay K 8644完全且迅速地逆转了邻NCS-DHP的抑制作用。因此,可以得出结论,邻NCS-DHP不会与豚鼠心脏和回肠中的Ca++通道二氢吡啶受体不可逆结合。然而,二氢吡啶分子上的邻异硫氰酸苯取代基赋予该化合物非常长的Ca++通道阻断活性持续时间。

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