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作为药物在器官中转运时间弥散决定因素的组织分布动力学:随机模型在大鼠后肢的应用

Tissue distribution kinetics as determinant of transit time dispersion of drugs in organs: application of a stochastic model to the rat hindlimb.

作者信息

Weiss M, Roberts M S

机构信息

Department of Pharmacology, Martin Luther University Halle-Wittenberg, Germany.

出版信息

J Pharmacokinet Biopharm. 1996 Apr;24(2):173-96. doi: 10.1007/BF02353488.

Abstract

A stochastic theory of drug transport in a random capillary network with permeation across the endothelial barrier is coupled with a model of tissue residence time of drugs assuming radial intratissue diffusion. Axial diffusion is neglected both in tissue as well as in the radially well-mixed vascular phase. The convective transport through the microcirculatory network is characterized by an experimentally determined transit time distribution of a nonpermeating vascular indicator. This information is used to identify three adjustable model parameters characterizing permeation, diffusion, and steady-state distribution into tissue. Predictions are made for the influence of distribution volume, capillary permeability, and tissue diffusion on transit time distributions. The role of convection (through the random capillary network), permeation, and diffusion as determinants of the relative dispersion of organ transit times has been examined. The relationship to previously proposed models of capillary exchange is discussed. Results obtained for lidocaine in the isolated perfused hindleg in rats indicate that although the contribution of intratissue diffusion to the dispersion process is relatively small in quantitative terms, it has a pronounced influence on the shape of the impulse response curve. The theory suggests that the rate of diffusion in muscle tissue is about two orders of magnitude slower than in water.

摘要

一种关于药物在具有跨内皮屏障渗透作用的随机毛细血管网络中转运的随机理论,与一个假设药物在组织内呈径向扩散的组织驻留时间模型相结合。在组织以及径向充分混合的血管相中,轴向扩散均被忽略。通过微循环网络的对流传输由一种非渗透性血管指示剂的实验测定的通过时间分布来表征。该信息用于确定三个可调节的模型参数,这些参数表征了药物的渗透、扩散以及进入组织的稳态分布。对分布容积、毛细血管通透性和组织扩散对通过时间分布的影响进行了预测。研究了对流(通过随机毛细血管网络)、渗透和扩散作为器官通过时间相对离散度决定因素的作用。讨论了与先前提出的毛细血管交换模型的关系。在大鼠离体灌注后肢中利多卡因的研究结果表明,尽管从数量上看组织内扩散对离散过程的贡献相对较小,但它对脉冲响应曲线的形状有显著影响。该理论表明,肌肉组织中的扩散速率比水中慢约两个数量级。

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