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Secondary Hyperaldosteronism Stimulates Acidification in Rat Distal Colon

Overview
Journal Pflugers Arch
Specialty Physiology
Date 1990 Aug 1
PMID 2174145
Citations 5
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Abstract

Recent studies from this laboratory have determined that colonic K+ absorption is altered by the PCO2 and by secondary hyperaldosteronism. Partial inhibition by vanadate and mucosal ouabain suggested the operation of an H+/K+ exchange pump. To determine the mechanism of acidification in rat distal colon, we measured in vitro acidification using the pH-stat technique by voltage-clamped segments of colonic epithelium in controls and in the presence of secondary hyperaldosteronism, induced by a sodium-deficient diet. Chronic stimulation with aldosterone resulted in increased mucosal acidification in vitro for at least 2 h. This effect could not be accounted for by lactate production and was not altered by elimination of the aldosterone-induced increase in voltage and short-circuit current with 10 microM amiloride. Studies with inhibitors and ion substitution revealed that mucosal acidification resulted from both Na-dependent and Na-independent mechanisms. Na-dependent acidification was inhibited by ATPase inhibitors and was mediated in part by a luminal Na+/H+ exchanger in the presence of secondary hyperaldosteronism. Na-independent acidification was mediated by a pathway dependent on luminal K+ that was inhibited by vanadate and mucosal ouabain, consistent with the operation of an H+/K+ exchange pump.

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References
1.
Schuurmans Stekhoven F, Bonting S . Transport adenosine triphosphatases: properties and functions. Physiol Rev. 1981; 61(1):1-76. DOI: 10.1152/physrev.1981.61.1.1. View

2.
Perrone R, MCBRIDE D . Aldosterone and PCO2 enhance rubidium absorption in rat distal colon. Am J Physiol. 1988; 254(6 Pt 1):G898-906. DOI: 10.1152/ajpgi.1988.254.6.G898. View

3.
Smith P, McCabe R . Mechanism and regulation of transcellular potassium transport by the colon. Am J Physiol. 1984; 247(5 Pt 1):G445-56. DOI: 10.1152/ajpgi.1984.247.5.G445. View

4.
FOSTER E, Zimmerman T, HAYSLETT J, Binder H . Corticosteroid alteration of active electrolyte transport in rat distal colon. Am J Physiol. 1983; 245(5 Pt 1):G668-75. DOI: 10.1152/ajpgi.1983.245.5.G668. View

5.
Gustin M, GOODMAN D . Isolation of brush-border membrane from the rabbit descending colon epithelium. Partial characterization of a unique K+-activated ATPase. J Biol Chem. 1981; 256(20):10651-6. View