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二价阳离子会降低单价阳离子跨瘤胃上皮的生电转运。

Divalent cations reduce the electrogenic transport of monovalent cations across rumen epithelium.

作者信息

Leonhard-Marek S

机构信息

Department of Physiology, School of Veterinary Medicine, Bischofsholer Damm 15/102, D-30173 Hannover, Germany.

出版信息

J Comp Physiol B. 2002 Oct;172(7):635-41. doi: 10.1007/s00360-002-0292-x. Epub 2002 Aug 20.

Abstract

The rumen epithelium of sheep and goats showed an increase in short circuit current ( Isc) and transepithelial conductance (gt) upon mucosal removal of divalent cations. A divalent-sensitive Isc and gt were present in Na+, K+ or Rb+ buffer, but nearly abolished in mucosal NMDG+ (N-methyl-D-glucamine) buffer. High K buffer, addition of BaCl2 or of ouabain on the serosal side also reduced or abolished the divalent-sensitive Isc. Mucosal Ca2+ was more potent in blocking Isc, but had the same potency as Mg2+ in blocking gt. A prolonged mucosal deprivation of Mg2+ ions increased gt, potential difference and basal as well as the Ca2+-sensitive Isc. Mucosal addition of Mg2+ had a smaller effect on gt after serosal preincubation with Ba. The data suggest that rumen epithelial cells exhibit an apical non-selective cation conductance, which permits the passage of monovalents in the mucosal absence of divalents. The development of a divalent-sensitive Isc in Na buffer requires Na+/K+ pumps and K+ recycling through Ba2+-sensitive K+ conductances on the basolateral side. This Isc is blocked by extracellular Ca2+ and both extracellular and intracellular Mg2+ ions. A prolonged deprivation of mucosal Mg2+ alone seems to affect intracellular Mg2+ in this Mg2+-absorbing tissue.

摘要

绵羊和山羊的瘤胃上皮在去除黏膜二价阳离子后,短路电流(Isc)和跨上皮电导(gt)增加。在Na⁺、K⁺或Rb⁺缓冲液中存在对二价离子敏感的Isc和gt,但在黏膜NMDG⁺(N - 甲基 - D - 葡糖胺)缓冲液中几乎消失。高钾缓冲液、在浆膜侧添加BaCl₂或哇巴因也会降低或消除对二价离子敏感的Isc。黏膜Ca²⁺在阻断Isc方面更有效,但在阻断gt方面与Mg²⁺具有相同的效力。长时间黏膜剥夺Mg²⁺离子会增加gt、电位差以及基础和Ca²⁺敏感的Isc。在用Ba进行浆膜预孵育后,黏膜添加Mg²⁺对gt的影响较小。数据表明,瘤胃上皮细胞表现出顶端非选择性阳离子电导,在黏膜缺乏二价离子时允许单价离子通过。在Na缓冲液中对二价离子敏感的Isc的产生需要Na⁺/K⁺泵以及通过基底外侧对Ba²⁺敏感的K⁺电导进行K⁺循环。这种Isc被细胞外Ca²⁺以及细胞外和细胞内Mg²⁺离子阻断。单独长时间剥夺黏膜Mg²⁺似乎会影响这种吸收Mg²⁺的组织中的细胞内Mg²⁺。

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