Spedding M, Schini V, Schoeffter P, Miller R C
J Cardiovasc Pharmacol. 1986 Nov-Dec;8(6):1130-7. doi: 10.1097/00005344-198611000-00006.
We investigated whether Ca2+ channel activation by K+ or Bay K 8644 could cause release of endothelium-derived relaxant factor (EDRF) from rat aorta. Bay K 8644 (0.1-100 nM) did not relax rat aorta preparations partially contracted with phenylephrine, although acetylcholine caused large relaxations. Following partial K+-depolarization (12 or 15 mM), Bay K 8644 (10 nM-1 microM) contracted rat aorta preparations directly. Preparations were more sensitive to Bay K 8644 when stripped of the endothelium in 12 mM K+; concentration-effect curves were displaced to the left, and maximum responses were enhanced. In 15 mM K+, there was a leftward shift of the curves without change of maximal responses. However, Bay K 8644 (1 microM), did not increase the guanosine 3',5' cyclic-monophosphate (cGMP) content of rat aorta in the presence of endothelium, which is a function of EDRF release. Representatives (nifedipine, verapamil, cinnarizine) from different calcium antagonist subgroups had differential effects on contractions induced by Bay K 8644, and the effects of verapamil (1 and 10 microM) and lower concentrations of cinnarizine (1 microM) were reduced in the presence of endothelium. We propose that there is a tonic liberation of EDRF in rat aorta, which is unaffected by Ca2+ channel activation and which gives effects similar to a weak hyperpolarization of the smooth muscle cells. Consequently, Ca2+ channel activation and sensitivity to certain calcium-antagonists may be modified.
我们研究了钾离子或Bay K 8644激活钙离子通道是否会导致大鼠主动脉释放内皮衍生舒张因子(EDRF)。Bay K 8644(0.1 - 100 nM)对用去氧肾上腺素部分收缩的大鼠主动脉标本没有舒张作用,尽管乙酰胆碱可引起大幅度舒张。在部分钾离子去极化(12或15 mM)后,Bay K 8644(10 nM - 1 μM)可直接使大鼠主动脉标本收缩。当在12 mM钾离子环境中剥去内皮时,标本对Bay K 8644更敏感;浓度 - 效应曲线向左移位,最大反应增强。在15 mM钾离子环境中,曲线向左移位但最大反应无变化。然而,在有内皮存在的情况下,Bay K 8644(1 μM)并未增加大鼠主动脉中鸟苷3',5' - 环磷酸(cGMP)的含量,而cGMP含量是EDRF释放的一个指标。不同钙拮抗剂亚组的代表药物(硝苯地平、维拉帕米、桂利嗪)对Bay K 8644诱导的收缩有不同影响,并且在有内皮存在时,维拉帕米(1和10 μM)以及较低浓度桂利嗪(1 μM)的作用减弱。我们提出,大鼠主动脉中存在EDRF的持续性释放,它不受钙离子通道激活的影响,并且产生类似于平滑肌细胞轻度超极化的效应。因此,钙离子通道激活以及对某些钙拮抗剂的敏感性可能会被改变。