Nakayama K, Morimoto K, Nozawa Y, Tanaka Y
Department of Pharmacology, University of Shizuoka, School of Pharmaceutical Sciences, Japan.
J Cardiovasc Pharmacol. 1992 Sep;20(3):380-91. doi: 10.1097/00005344-199209000-00007.
The present experiments were undertaken to elucidate Ca2+ antagonistic and binding properties of semotiadil and its (S)-(-)-enantiomer (SD-3212) in plausible clinical target tissues such as cerebral and coronary arteries. Semotiadil was about six times more potent than D-cis-diltiazem for Ca2+ antagonistic action, with a long-lasting and wide spectrum of inhibitory effects on contraction of dog cerebral arteries elicited by various spasmogens and mechanical stretch. Semotiadil exhibited a weak, negative, and heterotropic allosteric effect on (+)-[3H]PN 200-110 binding to pig coronary artery membranes: Scatchard analysis of saturation isotherms indicated that semotiadil increased the equilibrium dissociation constant (Kd) of (+)-[3H]PN-200-110 binding without causing a significant change in the maximum binding density (Bmax). Furthermore, semotiadil significantly increased the dissociation rate (k-1) of (+)-[3H]PN 200-110 from the specific binding site. The enhanced binding of (+)-[3H]PN 200-110 to the coronary artery caused by D-cis-diltiazem was attenuated when semotiadil was present, whereas binding inhibited by verapamil was not affected in the presence of semotiadil. The results suggest that semotiadil exerts a potent Ca2+ antagonistic action by binding to a site in the Ca2+ channel distinct from the 1,4-dihydropyridine recognition site and interacts with the 1,4-dihydropyridine binding site in a negative, heterotropic, allosteric manner.
本实验旨在阐明塞莫替地尔及其(S)-(-)-对映体(SD-3212)在大脑和冠状动脉等可能的临床靶组织中的钙拮抗和结合特性。塞莫替地尔的钙拮抗作用比D-顺式地尔硫䓬强约六倍,对由各种致痉剂和机械拉伸引起的犬脑动脉收缩具有持久且广泛的抑制作用。塞莫替地尔对(+)-[3H]PN 200-110与猪冠状动脉膜的结合表现出微弱、负性和异源性变构效应:饱和等温线的Scatchard分析表明,塞莫替地尔增加了(+)-[3H]PN-200-110结合的平衡解离常数(Kd),而最大结合密度(Bmax)没有显著变化。此外,塞莫替地尔显著增加了(+)-[3H]PN 200-110从特异性结合位点的解离速率(k-1)。当存在塞莫替地尔时,D-顺式地尔硫䓬引起的(+)-[3H]PN 200-110与冠状动脉结合的增强作用减弱,而维拉帕米抑制的结合在塞莫替地尔存在时不受影响。结果表明,塞莫替地尔通过与钙通道中不同于1,4-二氢吡啶识别位点的位点结合发挥强大的钙拮抗作用,并以负性、异源性、变构方式与1,4-二氢吡啶结合位点相互作用。