Transport of charged macromolecules across a biological charged membrane

M. Van Damme, M. Prevost
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引用次数: 2

Abstract

The glomerular capillary wall of the kidney behaves as an electronegatively charged structure consisting of three layers, the lamina densa and the two laminae rarae, which are differently chrrged. Thus, a three layer model is proposed to analyse the transport of charged macromolecules across this wall.

A modified Nernst-Planck equation describes the macromolecule flux across the wall and a Donnan equilibrium is assumed at each interface. For a given value of the fixed charge concentration in each layer, the local sieving coefficient of the macromolecule, i.e. the ratio between the concentrations in the filtrate and in the plasma, is calculated. A sieving curve which relates the sieving coefficient to the Einstein-Stokes radius of the macrosolute is obtained. The fixed charge concentrations in each layer are iteratively modified until simultaneous adjustment is achieved between calculated and experimental curves, for positively and negatively charged tracers and their neutral equivalent.

带电大分子在生物带电膜上的传输
肾小球毛细血管壁是一个带电负电荷的结构,由三层组成,即致密层和稀疏层,它们的电荷不同。因此,提出了一个三层模型来分析带电大分子在这一壁上的传输。修正的能斯特-普朗克方程描述了大分子通过壁面的通量,并在每个界面处假设了唐南平衡。对于每层固定电荷浓度的给定值,计算大分子的局部筛分系数,即滤液中浓度与等离子体中浓度的比值。得到了大溶质的爱因斯坦-斯托克斯半径与筛分系数的关系曲线。对于带正电荷和负电荷的示踪剂及其中性等效物,迭代地修改每层中的固定电荷浓度,直到在计算曲线和实验曲线之间同时进行调整。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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