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跨上皮钠离子转运与细胞内液:一项计算机模拟研究。

Transepithelial Na+ transport and the intracellular fluids: a computer study.

作者信息

Civan M M, Bookman R J

出版信息

J Membr Biol. 1982;65(1-2):63-80. doi: 10.1007/BF01870470.

Abstract

Computer simulations of tight epithelia under three experimental conditions have been carried out, using the rheogenic nonlinear model of Lew, Ferreira and Moura (Proc. Roy. Soc. London. B 206:53-83, 1979) based largely on the formulation of Koefoed-Johnsen and Ussing (Acta Physiol. Scand. 42: 298-308. 1958). First, analysis of the transition between the short-circuited and open-circuited states has indicated that (i) apical Cl- permeability is a critical parameter requiring experimental definition in order to analyze cell volume regulation, and (ii) contrary to certain experimental reports, intracellular Na+ concentration (ccNa) is expected to be a strong function of transepithelial clamping voltage. Second, analysis of the effects of lowering serosal K+ concentration (csK) indicates that the basic model cannot simulate several well-documented observations; these defects can be overcome, at least qualitatively, by modifying the model to take account of the negative feedback interaction likely to exist between the apical Na+ permeability and ccNa. Third, analysis of the strongly supports the concept that osmotically induced permeability changes in the apical intercellular junctions play a physiological role in conserving the body's stores of NaCl. The analyses also demonstrate that the importance of Na+ entry across the basolateral membrane is strongly dependent upon transepithelial potential, cmNa and csK; under certain conditions, net Na+ entry could be appreciably greater across the basolateral than across the apical membrane.

摘要

利用主要基于科弗德 - 约翰森和乌辛(《生理学杂志》42: 298 - 308, 1958)公式的卢、费雷拉和莫拉的生电非线性模型(《伦敦皇家学会学报》B 206:53 - 83, 1979),对三种实验条件下的紧密上皮进行了计算机模拟。首先,对短路状态和开路状态之间转变的分析表明:(i)顶端氯离子通透性是分析细胞体积调节所需实验定义的关键参数;(ii)与某些实验报告相反,细胞内钠离子浓度(ccNa)预计是跨上皮钳制电压的强函数。其次,对降低浆膜钾离子浓度(csK)影响的分析表明基本模型无法模拟一些有充分记录的观察结果;通过修改模型以考虑顶端钠离子通透性和ccNa之间可能存在的负反馈相互作用,至少在定性上可以克服这些缺陷。第三,分析有力地支持了这样一种概念,即顶端细胞间连接中渗透诱导的通透性变化在保存身体氯化钠储备方面发挥生理作用。分析还表明,钠离子通过基底外侧膜进入的重要性强烈依赖于跨上皮电位、cmNa和csK;在某些条件下,钠离子通过基底外侧膜的净进入量可能明显大于通过顶端膜的净进入量。

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