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药物肝清除中的膜转运。II:浓度依赖性转运和消除过程的区域分布模式。

Membrane transport in hepatic clearance of drugs. II: Zonal distribution patterns of concentration-dependent transport and elimination processes.

作者信息

Kwon Y, Morris M E

机构信息

Department of Pharmaceutics, School of Pharmacy, State University of New York at Buffalo, Amherst 14260, USA.

出版信息

Pharm Res. 1997 Jun;14(6):780-5. doi: 10.1023/a:1012158607766.

Abstract

PURPOSE

The objective of the present simulation study was to investigate the effects of hepatic zonal heterogeneity of membrane transporter proteins and intrinsic elimination activities on hepatic clearance (CL) and drug concentration gradient profiles in the sinusoidal blood and hepatocytes.

METHODS

The model used in the simulations assumes an apparent unidirectional carrier-mediated transport and a bidirectional diffusion of substrates in the hepatic sinusoidal membrane as well as a nonlinear intrinsic elimination. Three different distribution patterns of the transporter and the metabolizing enzyme along the sinusoidal flow path were used for the simulations. The effects of changes in the Michaelis-Menten parameters for those nonlinear processes, and in the unbound fractions of the drug in blood and tissue components were investigated.

RESULTS

Significant differences in CL occurred when the distribution patterns of the transporter and/or the metabolizing enzyme activities were altered under nonlinear conditions. The highest CL values were observed when the transporter and the metabolizing enzyme had similar distribution patterns within the liver acinus, while opposite distribution patterns produced the lowest CL values. Tissue concentration profiles were significantly affected by the distribution patterns of the transporter, but the changes in blood concentration profiles were relatively small. Altering protein binding in blood produced significant changes in CL, and blood and tissue concentration gradients, while altering protein binding in tissue affected only drug accumulation patterns within hepatocytes, regardless of the distribution patterns of the transporter or the metabolizing enzyme.

CONCLUSIONS

The present simulations demonstrate that hepatic zonal heterogeneities in the transporter and the metabolizing enzyme activities can significantly influence hepatic clearance and/or drug concentration gradient profiles in the sinusoidal blood and hepatocytes.

摘要

目的

本模拟研究的目的是探讨膜转运蛋白的肝区带异质性和内在消除活性对肝清除率(CL)以及肝血窦血液和肝细胞中药物浓度梯度分布的影响。

方法

模拟中使用的模型假定在肝血窦膜中底物存在明显的单向载体介导转运和双向扩散,以及非线性内在消除。沿着血窦流动路径使用三种不同的转运体和代谢酶分布模式进行模拟。研究了这些非线性过程的米氏参数变化以及药物在血液和组织成分中的未结合分数变化的影响。

结果

在非线性条件下,当转运体和/或代谢酶活性的分布模式改变时,CL出现显著差异。当转运体和代谢酶在肝腺泡内具有相似的分布模式时,观察到最高的CL值,而相反的分布模式产生最低的CL值。组织浓度分布受转运体分布模式的显著影响,但血药浓度分布的变化相对较小。改变血液中的蛋白结合会导致CL、血液和组织浓度梯度发生显著变化,而改变组织中的蛋白结合仅影响肝细胞内的药物蓄积模式,无论转运体或代谢酶的分布模式如何。

结论

本模拟研究表明,转运体和代谢酶活性的肝区带异质性可显著影响肝清除率和/或肝血窦血液及肝细胞中的药物浓度梯度分布。

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