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受体-酶系统的动力学行为:药物成瘾模型

Kinetic behavior of a receptor-enzyme system: a model for drug addiction.

作者信息

Ilyina A D, Zaitsev S V, Karasev A A, Kurochkin I N, Grishina I A, Varfolomeyev S D

机构信息

Chemistry Department, Autonomous University of Coahuila, México.

出版信息

Biosystems. 1998 Jan;45(1):67-76. doi: 10.1016/s0303-2647(97)00063-4.

Abstract

A theoretical kinetic model describing the behavior of a receptor-enzyme system during formation of drug addiction is considered in this article. The model assumes concomitant action of narcotic on at least two targets with opposite effects. Theoretical kinetic principles that the system must satisfy for the development of drug addiction are formulated. These kinetic principles are the slow inactivation of receptor-enzyme system and the divergence of characteristic times of dynamic concentration of product and enzyme.

摘要

本文考虑了一个描述药物成瘾形成过程中受体 - 酶系统行为的理论动力学模型。该模型假定麻醉剂对至少两个具有相反作用的靶点同时起作用。阐述了系统为发展成药物成瘾必须满足的理论动力学原理。这些动力学原理是受体 - 酶系统的缓慢失活以及产物和酶动态浓度特征时间的差异。

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