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膜电位方程在紧密上皮中的应用。

Application of membrane potential equations to tight epithelia.

作者信息

Gordon L G, Macknight A D

机构信息

Department of Physiology, University of Otago Medical School, Dunedin, New Zealand.

出版信息

J Membr Biol. 1991 Mar;120(2):155-63. doi: 10.1007/BF01872398.

Abstract

It is shown that equations developed to analyze the contributions of secondary active transport processes to symmetrical cells (Gordon, L.G.M., Macknight, A.D.C., 1991, J. Membrane Biol. 120:139-152) can be used, with minor modifications, to analyze the steady-state membrane potential in epithelia under the unique situation of short circuiting. Only under such conditions is there a single intracellular potential relative to both the mucosal and serosal media. The equations are investigated in relation to a model tight epithelium--the toad urinary bladder. It is shown that the properties of the membrane transport pathways are such that the intracellular potential under short-circuit conditions must be more negative than often reported. Given measurements of membrane potential and of voltage-divider ratio, it is possible to use the equations to estimate the absolute values of the membrane permeabilities and conductances under short-circuit conditions.

摘要

结果表明,为分析次级主动转运过程对对称细胞的贡献而建立的方程(Gordon, L.G.M., Macknight, A.D.C., 1991, J. Membrane Biol. 120:139 - 152),稍作修改后可用于分析短路这一特殊情况下上皮细胞的稳态膜电位。只有在这种条件下,相对于黏膜和浆膜介质才存在单一的细胞内电位。针对一种模型紧密上皮组织——蟾蜍膀胱,对方程进行了研究。结果表明,膜转运途径的特性使得短路条件下的细胞内电位必定比通常报道的更负。给定膜电位和分压器比率的测量值,就有可能使用这些方程来估算短路条件下膜通透性和电导的绝对值。

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