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气道上皮中离子-水通量耦合的计算研究。I. 模型构建

Computational studies of ion-water flux coupling in the airway epithelium. I. Construction of model.

作者信息

Novotny J A, Jakobsson E

机构信息

National Center for Supercomputing Applications, Beckman Institute, Urbana, Illinois 61801, USA.

出版信息

Am J Physiol. 1996 Jun;270(6 Pt 1):C1751-63. doi: 10.1152/ajpcell.1996.270.6.C1751.

Abstract

A mathematical model of ion and water transport across the airway epithelium is presented. The model consists of 12 state variables representing ion concentrations, volumes, and membrane potentials. All osmotically significant membrane transport processes for which there is conclusive experimental evidence are included: passive apical sodium and chloride movement, basolateral sodium-potassium pumping, basolateral sodium-potassium-chloride cotransport, passive basolateral potassium movement, nonselective passive paracellular ion motion, and water transport across all membranes. Ion movements are described by Michaelis-Menten kinetics or by the constant field flux equation. Model parameters are established with Ussing chamber data. Model behavior is validated by comparing in vitro simulations with experimental results. The model accurately reproduces short-circuit chloride and sodium fluxes, short-circuit current, and open-circuit membrane potentials from Ussing chamber data in the secreting and nonsecreting states. The model is then used to describe the behavior of the airway epithelium in vivo, in which case the apical electrolyte compartment is small and of variable size and ionic composition.

摘要

本文提出了一个跨气道上皮的离子和水运输的数学模型。该模型由12个状态变量组成,代表离子浓度、体积和膜电位。所有有确凿实验证据的具有渗透意义的膜运输过程都被纳入其中:被动的顶端钠和氯移动、基底外侧钠钾泵浦、基底外侧钠钾氯协同转运、被动的基底外侧钾移动、非选择性的被动细胞旁离子运动以及跨所有膜的水运输。离子运动通过米氏动力学或恒定场通量方程来描述。模型参数根据尤斯灌流小室数据确定。通过将体外模拟结果与实验结果进行比较来验证模型行为。该模型能准确再现分泌状态和非分泌状态下尤斯灌流小室数据中的短路氯和钠通量、短路电流以及开路膜电位。然后该模型被用于描述体内气道上皮的行为,在这种情况下,顶端电解质隔室较小且大小和离子组成可变。

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