Literature DB >> 1872375

Transcellular sodium transport in cultured cystic fibrosis human nasal epithelium.

N J Willumsen1, R C Boucher.   

Abstract

Cystic fibrosis (CF) airway epithelia exhibit raised transepithelial Na+ transport rates, as determined by open-circuit isotope fluxes and estimates of the amiloride-sensitive equivalent short-circuit current (Ieq). To study the contribution of apical and basolateral membrane paths to raised Na+ transport in CF, CF nasal epithelial cultures were studied with double-barreled Na(+)-selective microelectrodes and the Ussing chamber technique. Intracellular Na+ activity (acNa) was 24.1 +/- 1.5 mM (n = 36), a value similar to acNa of normal nasal epithelial cells. Reduction of luminal [Na+] to 3 mM abolished Ieq and reduced acNa. Amiloride (10(-4) M) abolished Ieq but increased acNa from 20 +/- 2 to 36 +/- 7 mM (n = 10). Amiloride-induced increase in acNa was not affected by serosal [Na+] reduction but was blocked by preexposure to reduced luminal [Na+]. Amphotericin B increased Ieq during amiloride exposure, indicating that amiloride did not inhibit NA(+)-K(+)-ATPase. Ouabain abolished Ieq and slowly raised acNa. Reduction of serosal [Na+] led to a decrease in acNa that was blocked by bumetanide. It is concluded that 1) CF airway epithelia exhibit an increased apical membrane Na+ permeability, 2) acNa is regulated to a normal level in CF cells despite increased transcellular Na+ fluxes, 3) the abnormal increase in acNa in response to amiloride is dependent on luminal Na+, 4) Na+ is transported across the basolateral membrane by a bumetanide-sensitive cotransport mechanism, and 5) ouabain inhibits the basolateral Na(+)-K(+)-ATPase, causing slow dissipation of the chemical and electrical gradients across the cell membranes.

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Year:  1991        PMID: 1872375     DOI: 10.1152/ajpcell.1991.261.2.C332

Source DB:  PubMed          Journal:  Am J Physiol        ISSN: 0002-9513


  17 in total

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Review 3.  Cotransport of salt and water in membrane proteins: membrane proteins as osmotic engines.

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4.  Airway surface liquid volume regulation determines different airway phenotypes in liddle compared with betaENaC-overexpressing mice.

Authors:  Marcus A Mall; Brian Button; Bjarki Johannesson; Zhe Zhou; Alessandra Livraghi; Ray A Caldwell; Susanne C Schubert; Carsten Schultz; Wanda K O'Neal; Sylvain Pradervand; Edith Hummler; Bernard C Rossier; Barbara R Grubb; Richard C Boucher
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Authors:  U Kersting; D Kersting; K R Spring
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6.  Modelling dysregulated Na+ absorption in airway epithelial cells with mucosal nystatin treatment.

Authors:  Alessandra Livraghi; Marcus Mall; Anthony M Paradiso; Richard C Boucher; Carla M Pedrosa Ribeiro
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8.  Progress in cystic fibrosis and the CF Therapeutics Development Network.

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9.  A physiologically-motivated model of cystic fibrosis liquid and solute transport dynamics across primary human nasal epithelia.

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