Stimulation of the basolateral Na+/K+-ATPase in the isolated perfused rabbit cortical collecting duct by raising either bath potassium or lumen sodium increases potassium secretion, sodium absorption and their apical conductances. Here we determined the effect of stimulating Na+/K+-ATPase on potassium secretion without luminal sodium transport. Acutely raising bath potassium concentrations from 2.5 to 8.5 mM, without luminal sodium, depolarized the basolateral membrane and transepithelial voltages while increasing the transepithelial, basolateral and apical membrane conductances of principal cells. Fractional apical membrane resistance and cell pH were elevated. Net potassium secretion was maintained albeit diminished and was still enhanced...
Aldosterone and potassium secretion by the cortical collecting duct.BackgroundAldosterone has been i...
In relation to dietary Na(+) intake and aldosterone levels, collecting duct principal cells are expo...
Tubular reabsorption of filtered sodium is tightly controlled to maintain body volume homeostasis. T...
Stimulation of the basolateral Na+/K+-ATPase in the isolated perfused rabbit cortical collecting duc...
The cortical collecting duct of the mammalian kidney is the most important nephron segment for the f...
This review covers aspects of Na and K transport along the three major regions of the collecting duc...
An extracellular K+ concentration in a narrow range is critical for the normal function of the heart...
International audienceIn vitro microperfusion experiments have demonstrated that cortical collecting...
Potassium permeable channels in primary cultures of rabbit cortical collecting tubules. Rabbit corti...
Experimental modulation of the apical membrane Na+ conductance or basolateral membrane Na+-K+ pump a...
Cortical collecting tubule potassium secretion: Effect of amiloride, ouabain, and luminal sodium con...
The kidney is the major regulator of potassium homeostasis. In addition to the ROMK channels, large ...
Mineralocorticoids (DOCA) are known to increase Na(\u27+) absorption and K(\u27+) secretion in the r...
Mineralocorticoid effect on K+ permeability of the rabbit cortical collecting tubule. Mineralocortic...
Na+/H+ exchange and H-K ATPase increase distal tubule acidification in chronic alkalosis. We examine...
Aldosterone and potassium secretion by the cortical collecting duct.BackgroundAldosterone has been i...
In relation to dietary Na(+) intake and aldosterone levels, collecting duct principal cells are expo...
Tubular reabsorption of filtered sodium is tightly controlled to maintain body volume homeostasis. T...
Stimulation of the basolateral Na+/K+-ATPase in the isolated perfused rabbit cortical collecting duc...
The cortical collecting duct of the mammalian kidney is the most important nephron segment for the f...
This review covers aspects of Na and K transport along the three major regions of the collecting duc...
An extracellular K+ concentration in a narrow range is critical for the normal function of the heart...
International audienceIn vitro microperfusion experiments have demonstrated that cortical collecting...
Potassium permeable channels in primary cultures of rabbit cortical collecting tubules. Rabbit corti...
Experimental modulation of the apical membrane Na+ conductance or basolateral membrane Na+-K+ pump a...
Cortical collecting tubule potassium secretion: Effect of amiloride, ouabain, and luminal sodium con...
The kidney is the major regulator of potassium homeostasis. In addition to the ROMK channels, large ...
Mineralocorticoids (DOCA) are known to increase Na(\u27+) absorption and K(\u27+) secretion in the r...
Mineralocorticoid effect on K+ permeability of the rabbit cortical collecting tubule. Mineralocortic...
Na+/H+ exchange and H-K ATPase increase distal tubule acidification in chronic alkalosis. We examine...
Aldosterone and potassium secretion by the cortical collecting duct.BackgroundAldosterone has been i...
In relation to dietary Na(+) intake and aldosterone levels, collecting duct principal cells are expo...
Tubular reabsorption of filtered sodium is tightly controlled to maintain body volume homeostasis. T...