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使用有限元模型对角质层中具有分配作用的扩散进行建模。

Modeling of diffusion with partitioning in stratum corneum using a finite element model.

作者信息

Barbero Ana M, Frasch H F

机构信息

Health Effects Laboratory Division, National Institute for Occupational Safety and Heath, MS L-3030, Morgantown, West Virginia 26505, USA.

出版信息

Ann Biomed Eng. 2005 Sep;33(9):1281-92. doi: 10.1007/s10439-005-5591-4.

Abstract

Partitioning and diffusion of chemicals in skin is of interest to researchers in areas such as transdermal penetration and drug disposition, either for risk assessment or transdermal delivery. In this study a finite element method is used to model diffusion in the skin's outermost layer, the stratum corneum (SC). The SC is considered to be a finite two-dimensional composite having different diffusivity values in each medium as well as a partition coefficient at the interfaces between media. A commercial finite element package with thermal analysis capabilities is selected due to the flexibility of this software to handle irregular geometries. Partitioning is accommodated through a change of variables technique. This technique is validated by comparison of model results with analytical solutions of steady-state flux, transient concentration profiles, and time lag for diffusion in laminates. Two applications are presented. Diffusion is solved in a two-dimensional "brick and mortar" geometry that is a simplification of human stratum corneum, with a partition coefficient between corneocyte and lipid. Results are compared to the diffusion in multiple laminates to examine effects of the partition coefficient. The second application is the modeling of diffusion with partitioning through an irregular geometry which is obtained from a micrograph of hairless mouse stratum corneum.

摘要

化学物质在皮肤中的分配和扩散是透皮渗透和药物处置等领域的研究人员所关注的,无论是用于风险评估还是透皮给药。在本研究中,采用有限元方法对皮肤最外层即角质层(SC)中的扩散进行建模。角质层被视为一个有限的二维复合材料,在每种介质中具有不同的扩散率值,并且在介质之间的界面处具有分配系数。由于该软件在处理不规则几何形状方面具有灵活性,因此选择了具有热分析功能的商业有限元软件包。通过变量变换技术来处理分配问题。通过将模型结果与层压板中扩散的稳态通量、瞬态浓度分布和时间滞后的解析解进行比较,验证了该技术的有效性。给出了两个应用实例。在二维“砖灰泥”几何形状中求解扩散问题,该几何形状是对人类角质层的简化,在角质形成细胞和脂质之间具有分配系数。将结果与多层压板中的扩散进行比较,以研究分配系数的影响。第二个应用实例是通过从无毛小鼠角质层显微照片获得的不规则几何形状对具有分配作用的扩散进行建模。

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