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Charge effects on the hindered transport of macromolecules across the endothelial surface glycocalyx layer

机译:电荷对大分子穿过内皮表面糖萼层的阻碍运输的影响

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摘要

A fluid mechanical and electrostatic model for the transport of solute molecules across the vascular endothelial surface glycocalyx layer (EGL) was developed to study the charge effect on the diffusive and convective transport of the solutes. The solute was assumed to be a spherical particle with a constant surface charge density, and the EGL was represented as an array of periodically arranged circular cylinders of like charge, with a constant surface charge density. By combining the fluid mechanical analyses for the flow around a solute suspended in an electrolyte solution and the electrostatic analyses for the free energy of the interaction between the solute and cylinders based on a mean field theory, we estimated the transport coefficients of the solute across the EGL. Both of diffusive and convective transports are reduced compared to those for an uncharged system, due to the stronger exclusion of the solute that results from the repulsive electrostatic interaction. The model prediction for the reflection coefficient for serum albumin agreed well with experimental observations if the charge density in the EGL is ranged from approximately −10 to −30 mEq/l.
机译:建立了一个流体力学和静电模型,用于研究溶质分子在血管内皮表面糖萼层(EGL)上的迁移,以研究电荷对溶质的扩散和对流迁移的影响。假定溶质是具有恒定表面电荷密度的球形颗粒,并且EGL被表示为具有恒定表面电荷密度的周期性排列的类似电荷的圆柱体的阵列。基于平均场理论,结合悬浮在电解质溶液中的溶质周围的流体力学分析和溶质与圆柱体之间相互作用的自由能的静电分析,我们估算了溶质在溶液中的传输系数。 EGL。与不带电系统相比,扩散和对流传输都减少了,这是由于排斥性静电相互作用导致的溶质被更强地排斥。如果EGL中的电荷密度在大约-10至-30 mEq / l范围内,则血清白蛋白反射系数的模型预测与实验观察非常吻合。

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