Williams J S, Grupp I L, Grupp G, Vaghy P L, Dumont L, Schwartz A, Yatani A, Hamilton S, Brown A M
Biochem Biophys Res Commun. 1985 Aug 30;131(1):13-21. doi: 10.1016/0006-291x(85)91763-2.
Receptor binding, electrophysiological, and inotropic effects of the pure dihydropyridine enantiomers (+)S202-791 and (-)R202-791 were studied in cardiac preparations. The KI for (+)S202-791 binding correlated with the ED50's for an increase in contractile force and an increase in calcium current, the latter effect occurring at depolarized as well as resting holding potentials. The KI for (-)R202-791 binding was much lower than the IC50's for inhibition of calcium current measured at holding potentials of -80 or -90 mV and a negative inotropic effect, but correlated closely with the IC50 for inhibition of calcium current measured at -30 mV. Thus, (+)S202-791, is a voltage independent calcium channel activator and (-)R202-791 is a voltage dependent calcium channel inhibitor.
在心脏制剂中研究了纯二氢吡啶对映体(+)S202-791和(-)R202-791的受体结合、电生理和变力作用。(+)S202-791结合的Ki与收缩力增加和钙电流增加的ED50相关,后一种效应在去极化以及静息钳制电位时出现。(-)R202-791结合的Ki远低于在-80或-90 mV钳制电位下测量的钙电流抑制IC50以及负性变力作用,但与在-30 mV下测量的钙电流抑制IC50密切相关。因此,(+)S202-791是一种电压非依赖性钙通道激活剂,(-)R202-791是一种电压依赖性钙通道抑制剂。