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Water and Solute Active Transport through Model Epidermis: Contribution of Electrodiffusion

机译:通过模型表皮的水和溶质活性运输:电渗变的贡献

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As part of a research program focusing on the role of human skin as a transport barrier, we formulate a coarsegrained model of the epidermis consisting of free extracellular water, live cells, and inert extracellular matrix subject to the coupling between molecular diffusive flux and electrokinetic flux (or electrodiffusion, as expressed by the Nernst-Planck equation). This polyphasic mathematical model accounts for active transport of physiologically-relevant solutes across the membrane of the live cells (keratinocytes), diffusion in the extracellular matrix and redistribution of water. The volume of the cell phase is regulated by the fluxes of water and Na~+, K~+ and Cl~- ions across the cell membrane and is controlled according to the time-delay scheme introduced in the model of Hernandez & Cristina (1998). Computing the transient response of a 100 μm-thick viable epidermis layer exposed to a hyposmotic shock reveals that accounting for the electrokinetic flux in the extracellular domain has negligible effect on the results. This result suggests that a significant simplification of the model can be made in terms of decoupling the extracellular variation of the electrostatic field from the diffusion problem during the study of complex transepidermal transport.
机译:作为研究计划的一部分,重点关注人体皮肤作为运输障碍的作用,我们配制了由分子漫射通量和电动通量之间的偶联的自由细胞外水,活细胞和惰性细胞外基质组成的表皮的酸奶模型(或电源扩散,如nernst-planck方程所表达)。这种多相数学模型用于在活细胞(角质形成细胞)膜上的生理相关溶质的主动运输,在细胞外基质中扩散并重新分配水。细胞相的体积由细胞膜上的水和Na〜+,K〜+,K〜+和Cl〜离子调节,并根据Hernandez&Cristina(1998年)中引入的时滞方案来控制(1998年)。计算暴露于软骨休克暴露于软骨休克的100μm厚的活表皮层的瞬态响应表明,核对细胞外结构域中的电动通量对结果产生了可忽略不计的影响。该结果表明,可以根据在复杂的Transepidermal运输过程中与扩散问题分离静电场的静电场的细胞外变化来进行模型的显着简化。

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