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Electrolyte transport across a simple epithelium. Steady-state and transient analysis.

机译:电解质跨简单的上皮运输。稳态和瞬态分析。

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摘要

A simple transporting epithelium is represented as a cellular compartment, compliant in all dimensions, and a paracellular channel, of arbitrary shape, between well-stirred mucosal ans serosal baths. The equations for mass balance, Poiseuille flow, and the Nernst-Planck equation are used to describe the continuous behavior of the system along cell and channel, whereas passive transport across membranes is given by the relations of Kedem and Katchalsky. Time-dependent terms are retained to permit study of transient phenomena. Boundary conditions at the baths demand only mass conservation and specify no a priori estimates of the system variables. A numerical model containing Na+,K+,Cl-, and impermeant cellular anions is formulated with membrane parameters taken from the literature on Necturus gallbladder. The differential equations are represented as a finite difference scheme and solved using Newton's method. It appears that apical cellular NaCl cotransport is necessary to obtain a reasonable cell chloride concentration. Investigation of the osmolality of the transepithelial flow shows that at steady state a leaky epithelium cannot separate baths of substantially different tonicity, although this does not guarantee isotonic transport between equiosmolar media. Changes in bath pressure, application of transepithelial electrical potential, and simulation of ion-substitution experiments are performed to understand the role of membrane permeabilities in determining the dynamic behavior of the epithelium.
机译:简单运输的上皮表现为在充分搅拌的粘膜肛门浆膜浴之间任意尺寸的细胞隔室和任意形状的细胞旁通道。质量平衡方程,泊肃叶流动和Nernst-Planck方程用于描述系统沿细胞和通道的连续行为,而跨膜的被动传输由Kedem和Katchalsky的关系给出。保留时间相关的术语以允许研究瞬态现象。熔池的边界条件仅要求质量守恒,而无需指定系统变量的先验估计。含有Na +,K +,Cl-和非渗透性细胞阴离子的数值模型是用取自Necturus胆囊文献的膜参数建立的。微分方程表示为有限差分方案,并使用牛顿法求解。似乎需要细胞顶端NaCl共转运才能获得合理的细胞氯化物浓度。对跨上皮血流渗透压的研究表明,在稳态下,渗漏的上皮不能分离张力基本不同的浴液,尽管这不能保证等渗介质之间的等渗运输。浴压的变化,跨上皮电位的施加以及离子取代实验的模拟旨在了解膜通透性在确定上皮细胞动态行为中的作用。

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