Kukovetz W R, Holzmann S, Pöch G
Department of Pharmacology and Toxicology, University of Graz, Austria.
J Cardiovasc Pharmacol. 1992;20 Suppl 3:S1-7. doi: 10.1097/00005344-199206203-00002.
Nicorandil relaxes coronary vascular smooth muscle by stimulating guanylyl cyclase and increasing cyclic GMP (cGMP) levels (as shown first in our laboratory) as well as by a second mechanism resulting in activation of K+ channels and hyperpolarization. Therefore, we studied the relative contributions of either mechanism to the overall response in bovine circular strips of coronary arteries by simultaneously measuring changes in length and in cGMP levels through radioimmunoassay. Blockade by 10 microM methylene blue of the cGMP increases in strips precontracted by 1 microM of the thromboxane A2 analogue U46619 reduced nicorandil-induced relaxation to 30-50%, and there were no significant changes in cGMP levels. Suppression of the hyperpolarizing component of nicorandil by 80.4 mM K+ or 1 microM glibenclamide in precontracted strips reduced nicorandil relaxation to 50% (K+) or shifted the dose response to the right by a factor of two (glibenclamide) without alteration of increases in cGMP. A quantitative separation of both mechanisms of action was obtained by comparing the correlation between increases in cGMP and relaxation under conditions of inhibited versus noninhibited hyperpolarization. The results indicate that cGMP contributes to the total relaxing effect of nicorandil by 30-40% at low concentrations and 80-90% at high concentrations of nicorandil. From the experiments with glibenclamide, it can be concluded that the probable mechanism by which nicorandil hyperpolarizes is opening glibenclamide-sensitive K+ channels in coronary vascular smooth muscle and that this latter effect mimics those of other K+ channel openers such as cromakalim or pinacidil.
尼可地尔可通过刺激鸟苷酸环化酶并提高环磷酸鸟苷(cGMP)水平(这首先是在我们实验室中发现的)以及通过第二种机制(导致钾离子通道激活和超极化)来舒张冠状动脉血管平滑肌。因此,我们通过放射免疫测定法同时测量长度变化和cGMP水平,研究了这两种机制对牛冠状动脉环形条带整体反应的相对贡献。用10微摩尔/升亚甲蓝阻断由1微摩尔/升血栓素A2类似物U46619预收缩条带中的cGMP增加,可将尼可地尔诱导的舒张作用降低至30 - 50%,且cGMP水平无显著变化。在预收缩条带中,用80.4毫摩尔/升钾离子或1微摩尔/升格列本脲抑制尼可地尔的超极化成分,可将尼可地尔的舒张作用降低至50%(钾离子)或使剂量反应向右移动两倍(格列本脲),而cGMP的增加没有改变。通过比较超极化受抑制与未受抑制条件下cGMP增加与舒张之间的相关性,对两种作用机制进行了定量分离。结果表明,在低浓度尼可地尔时,cGMP对其总舒张作用的贡献为30 - 40%,在高浓度时为80 - 90%。从格列本脲的实验可以得出结论,尼可地尔超极化的可能机制是打开冠状动脉血管平滑肌中对格列本脲敏感的钾离子通道,并且后一种作用类似于其他钾离子通道开放剂如克罗卡林或吡那地尔的作用。