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离体灌注大鼠肝脏系统中镉动力学的数学模型。

Mathematical model for cadmium kinetics in the isolated perfused rat liver system.

作者信息

Frazier J M

出版信息

Toxicol Appl Pharmacol. 1984 Dec;76(3):426-36. doi: 10.1016/0041-008x(84)90347-8.

Abstract

The isolated perfused rat liver (IPRL) preparation has previously been used to investigate cadmium kinetics. A mathematical model which has been developed to simulate cadmium kinetics in the IPRL is described. The model takes into consideration binding of cadmium to both intra- and extracellular proteins and the mechanisms of membrane transport. In addition, the competitive interaction of cadmium with endogenous zinc is incorporated into the model. Model simulations of the behavior of cadmium and zinc in the perfusion medium, liver, and bile are compared to results from IPRL experiments involving cadmium doses ranging from 0.29 to 15.6 mumol. A major contribution of this model is the identification, from a kinetic point of view, of two high-molecular-weight classes of intracellular cadmium-binding species which can be identified by two distinct peaks in Sephadex G-75 profiles of hepatic cytosol. This model can be utilized for the quantitation of kinetics based on specific mechanisms involved in cadmium hepatic kinetics.

摘要

离体灌注大鼠肝脏(IPRL)制备法先前已用于研究镉动力学。本文描述了一个已开发用于模拟IPRL中镉动力学的数学模型。该模型考虑了镉与细胞内和细胞外蛋白质的结合以及膜转运机制。此外,镉与内源性锌的竞争相互作用也纳入了该模型。将灌注介质、肝脏和胆汁中镉和锌行为的模型模拟结果与IPRL实验结果进行了比较,IPRL实验涉及的镉剂量范围为0.29至15.6微摩尔。该模型的一个主要贡献是,从动力学角度识别出两类高分子量的细胞内镉结合物种,这两类物种可通过肝细胞质溶胶的Sephadex G - 75图谱中的两个不同峰来识别。该模型可用于基于镉肝脏动力学中涉及的特定机制对动力学进行定量分析。

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