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离体灌注蝾螈近端小管。II. 单价离子置换与生电转运。

Isolated perfused salamander proximal tubule. II. Monovalent ion replacement and rheogenic transport.

作者信息

Sackin H, Boulpaep E L

出版信息

Am J Physiol. 1981 Nov;241(5):F540-55. doi: 10.1152/ajprenal.1981.241.5.F540.

Abstract

Early proximal tubules of the salamander kidney (Ambystoma tigrinum) were isolated and perfused in vitro. Transepithelial and basolateral electrical potential differences, transepithelial resistances, and intracellular ionic activities were measured during removal of Na+, K+, or Cl- from the lumen, the bath, or both lumen and bath. The effects of these external ionic replacements are interpreted in terms of an equivalent circuit that represents the renal epithelium as a network of passive ionic resistances, ionic diffusion potentials, and active transport current sources. Results indicate that rheogenic transport across the basolateral membrane is substantially diminished by removal of Na+ from either lumen or bath or by removal of K+ from the bath. On the other hand, bilateral chloride removal produces an increase in transepithelial resistance but almost no change in the calculated rate of basolateral rheogenic transport. This suggests that the source of the basolateral rheogenic ion flux ia a Na-K-ATPae that actively transports an excess of outward Na+ over inward K+.

摘要

分离并在体外灌注了虎纹钝口螈肾脏的早期近端小管。在从管腔、浴槽或管腔和浴槽中去除Na⁺、K⁺或Cl⁻的过程中,测量了跨上皮和基底外侧的电势差、跨上皮电阻以及细胞内离子活性。这些外部离子替代的影响是根据一个等效电路来解释的,该等效电路将肾上皮表示为一个由被动离子电阻、离子扩散电位和主动转运电流源组成的网络。结果表明,从管腔或浴槽中去除Na⁺或从浴槽中去除K⁺会显著降低基底外侧膜上的生电转运。另一方面,双侧去除氯离子会导致跨上皮电阻增加,但计算得出的基底外侧生电转运速率几乎没有变化。这表明基底外侧生电离子通量的来源是一种Na-K-ATP酶,它主动转运向外的Na⁺多于向内的K⁺。

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