Mechanism of potassium transport across proximal tubule epithelium in the rat

Vestri, S.; Malnic, G.

Brazilian Journal of Medical and Biological Research 23(11): 1195-1199

1990


ISSN/ISBN: 0100-879X
PMID: 2133031
Document Number: 354389
The mechanism of proximal tubule potassium reabsorption was studied by stopped-flow microperfusion and determination of potassium activities by ion-sensitive resin microelectrodes. The proximal tubule was unable to establish transepithelial potassium gradients. Perfusion with 20 mM K+ turned the lumen 3 mV more negative, an effect abolished by Ba2+. The half-time for K+ activities to reach their stationary level after perfusion with 1 mM K+ was significantly increased by Ba2+ from 4.25 .+-. 0.14 s to 11.0 .+-. 1.71 s, and after perfusion with 20 mM K+, from 5.43 .+-. 0.20 to 12.53 .+-. 0.90 s. These data indicate that a significant fraction of potassium is transferred across proximal tubule epithelium by a transcullular, K+-channel-dependent route.

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