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肠道CYP3A4和P-糖蛋白对口服药物吸收的影响——理论方法

Effects of intestinal CYP3A4 and P-glycoprotein on oral drug absorption--theoretical approach.

作者信息

Ito K, Kusuhara H, Sugiyama Y

机构信息

School of Pharmaceutical Sciences, Kitasato University, Tokyo, Japan.

出版信息

Pharm Res. 1999 Feb;16(2):225-31. doi: 10.1023/a:1018872207437.

Abstract

PURPOSE

To evaluate the effects of gut metabolism and efflux on drug absorption by simulation studies using a pharmacokinetic model involving diffusion in epithelial cells.

METHODS

A pharmacokinetic model for drug absorption was constructed including metabolism by CYP3A4 inside the epithelial cells, P-gp-mediated efflux into the lumen, intracellular diffusion from the luminal side to the basal side, and subsequent permeation through the basal membrane. Partial differential equations were solved to yield an equation for the fraction absorbed from gut to the blood. Effects of inhibition of CYP3A4 and/or P-gp on the fraction absorbed were simulated for a hypothetical substrate for both CYP3A4 and P-gp.

RESULTS

The fraction absorbed after oral administration was shown to increase following inhibition of P-gp. This increase was more marked when the efflux clearance of the drug was greater than the sum of the metabolic and absorption clearances and when the intracellular diffusion constant was small. Furthermore, it was demonstrated that the fraction absorbed was synergistically elevated by simultaneous inhibition of both CYP3A4 and P-gp.

CONCLUSIONS

The analysis using our present diffusion model is expected to allow the prediction of in vivo intestinal drug absorption and related drug interactions from in vitro studies using human intestinal microsomes, gut epithelial cells, CYP3A4-expressed Caco-2 cells, etc.

摘要

目的

通过使用涉及上皮细胞扩散的药代动力学模型进行模拟研究,评估肠道代谢和外排对药物吸收的影响。

方法

构建了一个药物吸收的药代动力学模型,包括上皮细胞内CYP3A4介导的代谢、P-糖蛋白介导的向肠腔的外排、从肠腔侧到基底侧的细胞内扩散以及随后通过基底膜的渗透。求解偏微分方程以得出从肠道吸收到血液的吸收分数方程。针对CYP3A4和P-糖蛋白的假设底物,模拟了抑制CYP3A4和/或P-糖蛋白对吸收分数的影响。

结果

口服给药后的吸收分数在抑制P-糖蛋白后显示增加。当药物的外排清除率大于代谢清除率与吸收清除率之和且细胞内扩散常数较小时,这种增加更为明显。此外,还证明了同时抑制CYP3A4和P-糖蛋白可使吸收分数协同升高。

结论

使用我们目前的扩散模型进行分析,有望通过使用人肠微粒体、肠道上皮细胞、表达CYP3A4的Caco-2细胞等进行的体外研究来预测体内肠道药物吸收及相关药物相互作用。

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