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镉离子(Cd++)对跨上皮细胞膜短路电流的影响。I. 镉离子与钙离子(Ca++)及抗利尿激素在蛙皮上的相互作用

Effects of Cd++ on short-circuit current across epithelial membranes. I. Interactions with Ca++ and vasopressin on frog skin.

作者信息

Hillyard S D, Gonick H C

出版信息

J Membr Biol. 1976 Mar 18;26(2-3):109-19. doi: 10.1007/BF01868869.

Abstract

Cadmium ion (Cd++) significantly increased potential difference (PD) and short-circuit current (SCC) across isolated frog skin when added to the outside Ringer's solution at 10(-4), 10(-3) and 5 X 10(-3) M concentration. Resistance was reduced by 10(-4) 7 cd++ but not significantly changed by the higher concentrations. When SCC was first stimulated by vasopressin, 10(-4) and 10(-3) M Cd++ produced additive stimulation which was reversible by washing with Cd++-free Ringer's. If SCC was first stimulated by Cd++, further stimulation by vasopressin was additive with 10(-4)M Cd++ but dompletely inhibited by 10(-3)M Cd++. Elevating the calcium ion (Ca++) concentration of the outer Ringer's from 10(-3) M to 5 X 10(-3)M or 10(-2)M prior to Cd++ treatment did not reduce the magnitude of SCC stimulation by Cd++. Removal of Ca++ from the outside Ringer's with 2 X 10%-3)M EDTA increased SCC as predicted. Subsequent addition of 5 X 10(-3) M Cd++ drastically reduced SCC below control levels while equimolar concentrations of Cd++ and EDTA reduced SCC only to control levels. These results suggest that Cd++ interacts with the components of the apical plasma membranes of epithelial cells which are associated with the stimulation of SCC by vasopressin and Ca++ removal and may be a useful probe for elucidating these components.

摘要

当以10⁻⁴、10⁻³和5×10⁻³ M的浓度添加到离体青蛙皮肤外的任氏液中时,镉离子(Cd++)显著增加了跨青蛙皮肤的电位差(PD)和短路电流(SCC)。10⁻⁴ M的Cd++使电阻降低,但较高浓度时电阻无显著变化。当SCC首先由血管加压素刺激时,10⁻⁴ M和10⁻³ M的Cd++产生相加刺激,用不含Cd++的任氏液冲洗可使其逆转。如果SCC首先由Cd++刺激,血管加压素的进一步刺激与10⁻⁴ M的Cd++相加,但被10⁻³ M的Cd++完全抑制。在Cd++处理前将外任氏液中的钙离子(Ca++)浓度从10⁻³ M提高到5×10⁻³ M或10⁻² M,并不会降低Cd++对SCC刺激的幅度。用2×10⁻³ M的乙二胺四乙酸(EDTA)从外任氏液中去除Ca++,如预期的那样增加了SCC。随后添加5×10⁻³ M的Cd++使SCC急剧降低至对照水平以下,而等摩尔浓度的Cd++和EDTA仅将SCC降低至对照水平。这些结果表明,Cd++与上皮细胞顶端质膜的成分相互作用,这些成分与血管加压素刺激SCC以及Ca++去除有关,可能是阐明这些成分的有用探针。

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