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角质层中连续分区限制溶质扩散的网络模型。

A network model of successive partitioning-limited solute diffusion through the stratum corneum.

机构信息

Department of Electrical and Computer Engineering, College of Engineering, Kansas State University, Manhattan, KS 66506, USA.

出版信息

J Theor Biol. 2010 Feb 7;262(3):471-7. doi: 10.1016/j.jtbi.2009.10.016. Epub 2009 Oct 13.

Abstract

As the most exposed point of contact with the external environment, the skin is an important barrier to many chemical exposures, including medications, potentially toxic chemicals and cosmetics. Traditional dermal absorption models treat the stratum corneum lipids as a homogenous medium through which solutes diffuse according to Fick's first law of diffusion. This approach does not explain non-linear absorption and irregular distribution patterns within the stratum corneum lipids as observed in experimental data. A network model, based on successive partitioning-limited solute diffusion through the stratum corneum, where the lipid structure is represented by a large, sparse, and regular network where nodes have variable characteristics, offers an alternative, efficient, and flexible approach to dermal absorption modeling that simulates non-linear absorption data patterns. Four model versions are presented: two linear models, which have unlimited node capacities, and two non-linear models, which have limited node capacities. The non-linear model outputs produce absorption to dose relationships that can be best characterized quantitatively by using power equations, similar to the equations used to describe non-linear experimental data.

摘要

作为与外部环境最暴露的接触点,皮肤是许多化学暴露的重要屏障,包括药物、潜在有毒化学品和化妆品。传统的皮肤吸收模型将角质层脂质视为同质介质,溶质根据菲克第一扩散定律扩散。这种方法无法解释实验数据中观察到的角质层脂质内的非线性吸收和不规则分布模式。基于溶质通过角质层的连续分配限制扩散的网络模型,其中脂质结构由一个大的、稀疏的、规则的网络表示,节点具有可变的特征,为皮肤吸收建模提供了一种替代、高效和灵活的方法,可以模拟非线性吸收数据模式。提出了四个模型版本:两个线性模型,具有无限的节点容量,和两个非线性模型,具有有限的节点容量。非线性模型的输出产生的吸收剂量关系可以通过使用幂方程来定量地最好地描述,类似于用于描述非线性实验数据的方程。

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