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MDCK细胞“紧密”上皮单层中的离子转运。

Ion transport in 'tight' epithelial monolayers of MDCK cells.

作者信息

Simmons N L

出版信息

J Membr Biol. 1981 Apr 15;59(2):105-14. doi: 10.1007/BF01875708.

Abstract

Cultured monolayers of MDCK cells grown upon filter supports display many features of in vivo epithelia. Previously reported values of transmonolayer resistance of 100 omega cm-2 (Misfeldt, Hamamoto & Pitelka, 1976; Cereijido, Robbins, Dolan, Rotunno & Sabatini, 1978) indicate a leaky epithelium. This paper describes the properties of a strain of MDCK cells which displays entirely different electrophysiological properties. The results show that (i) the mean transmonolayer resistance is 4.16 k omega cm-2, (ii) transmonolayer ion transport is of small magnitude since the mean spontaneous open circuit PD is only 2.17 mV basal surface positive and isotopic Na and Cl flux measurements fail to demonstrate a significant net flux, (iii) the action of ouabain, amiloride and ion substitutions are consistent with transmonolayer net Na movement being largely responsible for the spontaneous PD, and (iv) asymmetry in the localization of the Na-K ATPase is evident on the basis of 3H-ouabain binding to cell monolayer.

摘要

在滤膜支持物上生长的MDCK细胞培养单层具有许多体内上皮细胞的特征。先前报道的跨单层电阻值为100Ω·cm²(米斯费尔特、滨本和皮特卡,1976年;塞雷吉多、罗宾斯、多兰、罗图诺和萨巴蒂尼,1978年),表明是一种渗漏性上皮。本文描述了一种具有完全不同电生理特性的MDCK细胞系的特性。结果表明:(i)平均跨单层电阻为4.16kΩ·cm²;(ii)跨单层离子转运量较小,因为平均自发开路电位仅为2.17mV,基底表面为正电位,且同位素钠和氯通量测量未能证明有明显的净通量;(iii)哇巴因、氨氯吡脒和离子替代的作用与跨单层净钠移动在很大程度上导致自发电位一致;(iv)基于³H-哇巴因与细胞单层结合,钠钾ATP酶定位的不对称性很明显。

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