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制霉菌素作为研究紧密上皮细胞电特性的探针。

Nystatin as a probe for investigating the electrical properties of a tight epithelium.

作者信息

Lewis S A, Eaton D C, Clausen C, Diamond J M

出版信息

J Gen Physiol. 1977 Oct;70(4):427-40. doi: 10.1085/jgp.70.4.427.

DOI:10.1085/jgp.70.4.427
PMID:915470
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC2228507/
Abstract

We show how the antibiotic nystatin may be used in conjunction with microelectrodes to resolve transepithelial conductance Gt into its components: Ga, apical membrane conductance; Gbl, basolateral membrane conductance; and Gj, junctional conductance. Mucosal addition of nystatin to rabbit urinary bladder in Na+-containing solutions caused Gt to increase severalfold to ca. 460 micrometerho/muF, and caused the transepithelial voltage Vt to approach +50 mV regardless of its initial value. From measurements of Gt and the voltage-divider ratio as a function of time after addition or removal of nystatin, values for Ga, Gbl, and Gj of untreated bladder could be obtained. Nystatin proved to have no direct effect on Gbl or Gj but to increase Ga by about two orders of magnitude, so that the basolateral membrane then provided almost all of the electrical resistance in the transcellular pathway. The nystatin channel in the apical membrane was more permeable to cations than to anions. The dose-response curve for nystatin had a slope of 4.6. Use of nystatin permitted assessment of whether microelectrode impalement introduced a significant shunt conductance into the untreated apical membrane, with the conclusion that such a shunt was negligible in the present experiments. Nystatin caused a hyperpolarization of the basolateral membrane potential in Na+-containing solutions. This may indicate that the Na+ pump in this membrane is electrogenic.

摘要

我们展示了抗生素制霉菌素如何与微电极结合使用,将跨上皮电导Gt分解为其组成部分:Ga,顶膜电导;Gbl,基底外侧膜电导;以及Gj,连接电导。在含钠溶液中向兔膀胱黏膜添加制霉菌素会使Gt增加几倍至约460微西门子/微法,并使跨上皮电压Vt接近+50 mV,无论其初始值如何。通过测量添加或去除制霉菌素后Gt和分压比随时间的变化,可以获得未处理膀胱的Ga、Gbl和Gj值。事实证明,制霉菌素对Gbl或Gj没有直接影响,但会使Ga增加约两个数量级,因此基底外侧膜几乎提供了跨细胞途径中的所有电阻。顶膜中的制霉菌素通道对阳离子的通透性比对阴离子的通透性更高。制霉菌素的剂量反应曲线斜率为4.6。使用制霉菌素可以评估微电极刺入是否会在未处理的顶膜中引入显著的分流电导,得出的结论是,在本实验中这种分流可以忽略不计。制霉菌素在含钠溶液中会导致基底外侧膜电位超极化。这可能表明该膜中的钠泵是生电的。