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[血液前列腺素合成多酶系统的动力学模型。I. 血栓素和前列环素水平的稳定机制]

[Kinetic model of a multienzyme system of blood prostanoid synthesis. I. Mechanism of stabilization of thromboxane and prostacyclin levels].

作者信息

Varfolomeev S D, Mevkh A T, Gachok V P

出版信息

Mol Biol (Mosk). 1986 Jul-Aug;20(4):957-67.

PMID:3093845
Abstract

A kinetic scheme of the prostacyclin-thromboxane system has been evolved on the basis of the authors experimental data and the results described elsewhere. The kinetic behavior of the model has been analysed with the aid of computer technology by varying the following parameters: phospholipase activities, free arachidonic acid exchange rates between platelets and endothelium, PGH-synthetase biosynthesis rates, velocities of arachidonic acid pathways other than the cyclooxygenase ones. It has been demonstrated that the biological system is capable of sustaining prostacyclin and thromboxane concentrations at steady fixed levels within a wide range of kinetic parameters.

摘要

基于作者的实验数据及其他地方所描述的结果,已推导出前列环素 - 血栓素系统的动力学方案。借助计算机技术,通过改变以下参数分析了该模型的动力学行为:磷脂酶活性、血小板与内皮之间游离花生四烯酸的交换率、PGH合成酶的生物合成率、除环氧化酶途径外花生四烯酸途径的速度。结果表明,该生物系统能够在广泛的动力学参数范围内将前列环素和血栓素浓度维持在稳定的固定水平。

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