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蟾蜍膀胱上皮的微电极研究。黏膜溶液中钠浓度变化对等效电动势的影响。

Microelectrode studies in toad urinary bladder epithelium. effects of Na concentration changes in the mucosal solution on equivalent electromotive forces.

作者信息

Narvarte J, Finn A L

出版信息

J Gen Physiol. 1980 Mar;75(3):323-44. doi: 10.1085/jgp.75.3.323.

Abstract

Microelectrode techniques were employed to measure membrane potentials, the electrical resistance of the cell membranes, and the shunt pathway, and to compute the equivalent electromotive forces (EMF) at both cell borders in toad urinary bladder epithelium before and after reductions in mucosal sodium concentration. Basal electrical parameters were not significantly different from those obtained with impalements from the serosal side, indicating that mucosal impalements do not produce significant leaks in the apical membrane. A decrease in mucosal Na concentration caused the cellular resistance to increase and both apical and basolateral EMF to depolarize. When Na was reduced from 112 to 2.4 mM in bladders with spontaneously different baseline values of transepithelial potential difference (Vms), a direct relationship was found between the change in Vms brought about by the Na reduction and the base-line Vms before the change. A direct relationship was also found by plotting the change in EMF at the apical or basolateral border caused by a mucosal Na reduction with the corresponding base-line EMF before the change. These results indicate that resting apical membrane EMF (and, therefore, resting apical membrane potential) is determined by the Na selectivity of the apical membrane, whereas basolateral EMF is at least in part the result of rheogenic Na transport. These results are consistent with data of others that suggested a link between the activity of the basolateral Na pump and apical Na conductance.

摘要

采用微电极技术测量蟾蜍膀胱上皮细胞黏膜钠浓度降低前后细胞膜电位、细胞膜电阻和旁路途径,并计算细胞两侧的等效电动势(EMF)。基础电学参数与从浆膜侧刺入所获得的参数无显著差异,表明从黏膜侧刺入不会导致顶端膜出现显著渗漏。黏膜钠浓度降低导致细胞电阻增加,顶端和基底外侧的EMF均发生去极化。在跨上皮电位差(Vms)基线值自发不同的膀胱中,当钠浓度从112 mM降至2.4 mM时,发现钠浓度降低引起的Vms变化与变化前的基线Vms之间存在直接关系。通过绘制黏膜钠浓度降低引起的顶端或基底外侧边界EMF变化与变化前相应的基线EMF,也发现了直接关系。这些结果表明,静息顶端膜EMF(因此也是静息顶端膜电位)由顶端膜的钠选择性决定,而基底外侧EMF至少部分是生电钠转运的结果。这些结果与其他人的数据一致,这些数据表明基底外侧钠泵的活性与顶端钠电导之间存在联系。

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