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莫西多明血管舒张作用的分子机制。

Molecular aspects underlying the vasodilator action of molsidomine.

作者信息

Noack E, Feelisch M

机构信息

Institute of Pharmacology, Heinrich-Heine-University, Düsseldorf, F.R.G.

出版信息

J Cardiovasc Pharmacol. 1989;14 Suppl 11:S1-5.

PMID:2484685
Abstract

Using different techniques, we measured the kinetics of nitric oxide (NO) liberation from SIN-1, the metabolite of molsidomine, and some related sydnonimines like its thiomorpholinyl analog, compound C 78-0698, and compared it under identical experimental conditions with its biological action at the guanylate cyclase (GC) site, taking this target enzyme as a suitable bioassay. There was a close relationship between half-maximal activation of GC and the velocity of NO release. The thiomorpholinyl analog was slightly more active in NO liberation than SIN-1 and activated the enzyme more rapidly. The kinetics of SIN-1A and SIN-1C formation, determined by high-performance liquid chromatography, could be accurately described by a Bateman equation. Oxyhemoglobin shifted the concentration-response curve of SIN-1 at the isolated soluble GC concentration to the right, whereas methemoglobin was without any effect. The results of our chemical and biochemical studies suggest that velocity and amount of NO formation are the only rate-limiting factors of guanylate cyclase activation by sydnonimines like SIN-1. NO, therefore, exclusively is the mediator of their pharmacodynamic action. In remarkable contrast to nitrate esters like glyceryl trinitrate or isosorbide dinitrate, NO liberation is not dependent on the interaction with thiol-containing compounds like cysteine.

摘要

我们运用不同技术,测定了硝普钠(SIN-1,莫索尼定的代谢产物)以及一些相关的 sydnonimine(如硫代吗啉基类似物,化合物 C 78-0698)释放一氧化氮(NO)的动力学,并在相同实验条件下,将其与在鸟苷酸环化酶(GC)位点的生物学作用进行比较,以此种靶酶作为合适的生物测定方法。GC 的半数最大激活与 NO 释放速度之间存在密切关系。硫代吗啉基类似物在 NO 释放方面比 SIN-1 稍具活性,且能更快地激活该酶。通过高效液相色谱法测定的 SIN-1A 和 SIN-1C 形成的动力学,可用贝特曼方程精确描述。氧合血红蛋白使 SIN-1 在分离的可溶性 GC 浓度下的浓度-反应曲线右移,而高铁血红蛋白则无任何影响。我们的化学和生化研究结果表明,NO 形成的速度和量是像 SIN-1 这样的 sydnonimine 激活鸟苷酸环化酶的唯一限速因素。因此,NO 是其药效学作用的唯一介质。与硝酸甘油或异山梨醇二硝酸酯等硝酸酯显著不同的是,NO 的释放不依赖于与含硫醇化合物(如半胱氨酸)的相互作用。

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