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细胞和细胞旁传导模式对上皮运输和代谢的影响。

Influence of cellular and paracellular conductance patterns on epithelial transport and metabolism.

作者信息

Essig A

出版信息

Biophys J. 1982 May;38(2):143-52. doi: 10.1016/S0006-3495(82)84541-4.

Abstract

Theoretical analysis of transepithelial active Na transport is often based on equivalent electrical circuits comprising discrete parallel active and passive pathways. Recent findings show, however, that Na+ pumps are distributed over the entire basal lateral surface of epithelial cells. This suggests that Na+ that has been actively transported into paracellular channels may to some extent return to the apical (mucosal) bathing solution, depending on the relative conductances of the pathways via the tight junctions and the lateral intercellular spaces. Such circulation, as well as the relative conductance of cellular and paracellular pathways, may have an important influence on the relationships between parameters of transcellular and transepithelial active transport and metabolism. These relationships were examined by equivalent circuit analysis of active Na transport, Na conductance, the electromotive force of Na transport, the "stoichiometry" of transport, and the degree of coupling of transport to metabolism. Although the model is too crude to permit precise quantification, important qualitative differences are predicted between "loose" and "tight" epithelia in the absence and presence of circulation. In contrast, there is no effect on the free energy of metabolic reaction estimated from a linear thermodynamic formalism. Also of interest are implications concerning the experimental evaluation of passive paracellular conductance following abolition of active transport, and the use of the cellular voltage-divider ratio to estimate the relative conductances of apical and basal lateral plasma membranes.

摘要

跨上皮主动钠转运的理论分析通常基于包含离散并联主动和被动途径的等效电路。然而,最近的研究结果表明,钠泵分布在上皮细胞的整个基底外侧表面。这表明,被主动转运到细胞旁通道的钠可能在一定程度上返回到顶端(黏膜)浴液中,这取决于通过紧密连接和细胞间外侧间隙的途径的相对电导。这种循环以及细胞和细胞旁途径的相对电导,可能对跨细胞和跨上皮主动转运及代谢参数之间的关系产生重要影响。通过对主动钠转运、钠电导、钠转运的电动势、转运的“化学计量”以及转运与代谢的偶联程度进行等效电路分析,研究了这些关系。尽管该模型过于粗略,无法进行精确量化,但预计在不存在和存在循环的情况下,“疏松”和“紧密”上皮之间会存在重要的定性差异。相比之下,从线性热力学形式主义估计的代谢反应自由能不受影响。同样值得关注的是,在主动转运被废除后,关于被动细胞旁电导的实验评估以及使用细胞分压器比率来估计顶端和基底外侧质膜的相对电导的影响。

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本文引用的文献

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POTENTIAL, IMPEDANCE, AND RECTIFICATION IN MEMBRANES.膜的电位、阻抗和整流。
J Gen Physiol. 1943 Sep 20;27(1):37-60. doi: 10.1085/jgp.27.1.37.
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J Gen Physiol. 1960 Jul;43(6):1137-48. doi: 10.1085/jgp.43.6.1137.
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Energetics of active transport processes.主动运输过程的能量学
Biophys J. 1968 Dec;8(12):1434-57. doi: 10.1016/S0006-3495(68)86565-8.

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