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Using the method of homogenization to calculate the effective diffusivity of the stratum corneum

机译:使用均质化方法计算角质层的有效扩散率

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摘要

The stratum corneum is the outermost layer of the skin, which acts as a barrier membrane against the penetration of molecules into and out of the body. It has a biphasic structure consisting of keratinized cells - the corneocytes - that are embedded in an ordered lipid matrix. Transport of molecules through the stratum corneum has direct analogies to the classic problem of diffusion of solutes across a composite membrane. The macroscopic transport properties of the stratum corneum are functions of its microscopic structure and the transport properties of the corneocytes and the lipid matrix. We obtain the macroscopic diffusion coefficients of the stratum corneum through homogenization of the diffusion equation using the method of asymptotic expansions. Unlike previous studies that were limited to considering the 2D cross-section of the stratum corneum, homogenization allows the calculation of the 3D effective diffusivity tensor. Assuming the corneocytes to be impermeable, we studied the effects that different geometric arrangements of the corneocytes within the lipid matrix have on the continuum diffusion coefficients. The results indicate that the thin elongated shape of the corneocytes is ideally suited to lowering the effective diffusivity of the stratum corneum.
机译:角质层是皮肤的最外层,其充当屏障膜,阻止分子渗入和渗出人体。它具有两相结构,由角化细胞-角质细胞-包埋在有序脂质基质中组成。分子通过角质层的运输与溶质跨复合膜扩散的经典问题直接相似。角质层的宏观运输特性是其微观结构以及角质细胞和脂质基质的运输特性的函数。通过使用渐近展开法对扩散方程进行均化,我们获得了角质层的宏观扩散系数。与以前的研究仅限于考虑角质层的2D横截面不同,均质化可以计算3D有效扩散张量。假设角质细胞是不可渗透的,我们研究了脂质基质内角质细胞的不同几何排列对连续体扩散系数的影响。结果表明,角质细胞的细长形状非常适合降低角质层的有效扩散率。

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