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在离体兔心脏中研究新型脑缺血性化合物FG 9202(NBQX)的心脏摄取动力学及可能的动态效应。

Cardiac uptake kinetics and possible dynamic effects of a new cerebral antiischaemic compound FG 9202 (NBQX) studied in the isolated rabbit heart.

作者信息

Nielsen-Kudsk F, Mellemkjaer S, Bang L

机构信息

Institute of Pharmacology, University of Aarhus, Denmark.

出版信息

Pharmacol Toxicol. 1991 Aug;69(2):127-31. doi: 10.1111/j.1600-0773.1991.tb01285.x.

Abstract

Accumulation of the putative drug FG 9202 in isolated rabbit hearts showed monophasic exponential kinetics with a half-life of only 0.59 min. The disposition showed a three-phasic exponential time course with half-lives of 0.34, 1.51 and 15.8 min, respectively, which was interpreted as three-compartment kinetics. FG 9202 accumulated only about 3 times in the myocardium at steady-state with 51, 32 and 17% referable to a superficial and two deeper myocardial drug pools. The drug did not significantly affect contraction amplitude or velocity of contraction at increasing concentrations up to 40.6 micrograms.ml-1 (119 microM). Heart beating frequency decreased slightly but only significantly at some of the higher concentrations. Neither dromotropic, bathmotropic nor ischaemic ECG-effects were observed. Coronary flow-rate and myocardial oxygen consumption decreased at the highest drug concentrations. Myocardial efficiency expressed as the ratio of contractile parameters to oxygen consumption showed a minor but insignificant increase at the highest drug-exposure levels. Our findings indicate that FG 9202 is not potentially toxic to the isolated, spontaneously beating rabbit heart in vitro.

摘要

在离体兔心脏中,假定药物FG 9202的蓄积呈现单相指数动力学,半衰期仅为0.59分钟。其处置呈现三相指数时程,半衰期分别为0.34、1.51和15.8分钟,这被解释为三室动力学。在稳态时,FG 9202在心肌中的蓄积仅约为3倍,其中51%、32%和17%分别归因于一个浅表心肌药物池和两个更深层的心肌药物池。在浓度增加至40.6微克·毫升-1(119微摩尔)时,该药物对收缩幅度或收缩速度没有显著影响。心率略有下降,但仅在某些较高浓度时显著下降。未观察到变传导性、变力性或缺血性心电图效应。在最高药物浓度时,冠状动脉血流量和心肌耗氧量降低。以收缩参数与耗氧量之比表示的心肌效率在最高药物暴露水平时略有增加,但不显著。我们的研究结果表明,FG 9202在体外对离体、自发搏动的兔心脏无潜在毒性。

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