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Pathway Distribution Model for Solute Transport in Stratum Corneum

机译:角质层溶质迁移的途径分布模型

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One of the main functions of the skin is to reduce the amount of water evaporating from the surface of a human body with outermost layer of the epidermis, stratum corneum (SC), forming a barrier, which protects underlying tissue from dehydration. Empirical data obtained for water penetration in SC are normally analysed using mathematical models, among which the homogeneous membrane (HM) model is commonly employed to describe transport kinetics in SC. However, the HM model failed to fit simultaneously the experimental data for water permeation and desorption (Anissimov YG, Roberts MS. 2009. J Pharm Sci 98:772-781), as the model does not account for a complex structure of SC and irregular distribution of corneocytes. Our previous work (Anissimov YG, Roberts MS. 2009. J Pharm Sci 98:772-781) introduced a slow binding (SB) model that is more aligned with the true biological structure of SC. This report provides an alternative/additional model to both the HM and SB models and takes into account the distribution of effective pathways across SC for water transport. (C) 2015 Wiley Periodicals, Inc. and the American Pharmacists Association
机译:皮肤的主要功能之一是减少从具有表皮最外层的表皮角质层(SC)的人体表面蒸发的水量,形成一层屏障,保护底层组织免于脱水。通常使用数学模型来分析在SC中透水的经验数据,其中均质膜(HM)模型通常用于描述SC中的运输动力学。但是,HM模型无法同时拟合水渗透和解吸的实验数据(Anissimov YG,Roberts MS。2009. J Pharm Sci 98:772-781),因为该模型无法说明SC的复杂结构和不规则结构。角质细胞的分布。我们之前的工作(Anissimov YG,Roberts MS。2009. J Pharm Sci 98:772-781)介绍了一种慢结合(SB)模型,该模型与SC的真实生物学结构更加吻合。该报告为HM模型和SB模型提供了替代/补充模型,并考虑了跨SC的水运输有效途径的分布。 (C)2015 Wiley Periodicals,Inc.和美国药剂师协会

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