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计算机模拟同时的经皮吸收和异生物质代谢:模型开发及芳香胺的案例研究。

In Silico Simulation of Simultaneous Percutaneous Absorption and Xenobiotic Metabolism: Model Development and a Case Study on Aromatic Amines.

机构信息

Department of Chemical and Process Engineering, University of Surrey, Guildford, GU2 7XH, UK.

Unilever, Colworth Science Park, Sharnbrook, Bedfordshire, MK44 1LQ, UK.

出版信息

Pharm Res. 2020 Nov 11;37(12):241. doi: 10.1007/s11095-020-02967-w.

Abstract

PURPOSE

To advance physiologically-based pharmacokinetic modelling of xenobiotic metabolism by integrating metabolic kinetics with percutaneous absorption.

METHOD

Kinetic rate equations were proposed to describe the metabolism of a network of reaction pathways following topical exposure and incorporated into the diffusion-partition equations of both xenobiotics and metabolites. The published ex vivo case study of aromatic amines was simulated. Diffusion and partition properties of xenobiotics and subsequent metabolites were determined using physiologically-based quantitative structure property relationships. Kinetic parameters of metabolic reactions were best fitted from published experimental data.

RESULTS

For aromatic amines, the integrated transdermal permeation and metabolism model produced data closely matched by experimental results following limited parameter fitting of metabolism rate constants and vehicle:water partition coefficients. The simulation was able to produce dynamic concentration data for all the dermal layers, as well as the vehicle and receptor fluid.

CONCLUSION

This mechanistic model advances the dermal in silico functionality. It provides improved quantitative spatial and temporal insight into exposure of xenobiotics, enabling the isolation of governing features of skin. It contributes to accurate modelling of concentrations of xenobiotics reaching systemic circulation and additional metabolite concentrations. This is vital for development of both pharmaceuticals and cosmetics.

摘要

目的

通过将代谢动力学与经皮吸收相结合,推进外源性物质代谢的基于生理学的药代动力学建模。

方法

提出了动力学速率方程来描述局部暴露后反应途径网络的代谢,并将其纳入外源性物质和代谢物的扩散-分配方程中。模拟了已发表的芳香胺的离体案例研究。使用基于生理学的定量构效关系来确定外源性物质和随后的代谢物的扩散和分配特性。代谢反应的动力学参数是根据已发表的实验数据进行最佳拟合的。

结果

对于芳香胺,经皮渗透和代谢的综合模型在对代谢速率常数和载体:水分配系数进行有限参数拟合后,产生的数据与实验结果非常吻合。该模拟能够为所有皮肤层以及载体和受体液产生动态浓度数据。

结论

该机械模型推进了皮肤的计算功能。它提供了对外源性物质暴露的改进的定量空间和时间洞察,使皮肤的控制特征得以隔离。它有助于准确模拟到达体循环的外源性物质浓度和其他代谢物浓度。这对于药品和化妆品的开发都至关重要。

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