Literature DB >> 12702745

Disruptive effects of anion secretion inhibitors on airway mucus morphology in isolated perfused pig lung.

Laura Trout1, Mary I Townsley, Amy L Bowden, Stephen T Ballard.   

Abstract

Since anion secretion inhibitors reproduce important aspects of cystic fibrosis (CF) lung disease, the effects of these antagonists on airway mucus morphology were assessed in isolated perfused pig lungs. Maximal inhibitory concentrations of bumetanide and dimethylamiloride, which respectively block Cl- and HCO3- secretion in porcine airways, induced the formation of dense 'plastered' mucus on the airway surface, depletion of periciliary fluid and collapse of cilia. This effect was more pronounced when lungs were also exposed to bethanechol to stimulate submucosal gland secretion, when plastered mucus covered > 98 % of the airway surface. Bethanechol also reduced gland duct mucin content in the absence, but not presence, of the anion secretion inhibitors. Anion secretion inhibitors did not induce measurable increases in goblet cell degranulation. We conclude that inhibition of anion and liquid secretion in porcine lungs disrupts the normal morphology of airway surface mucus, providing further evidence that impaired anion secretion alone could account for critical aspects of CF lung disease.

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Year:  2003        PMID: 12702745      PMCID: PMC2342974          DOI: 10.1113/jphysiol.2002.035923

Source DB:  PubMed          Journal:  J Physiol        ISSN: 0022-3751            Impact factor:   5.182


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  12 in total

1.  Restoration of mucociliary transport in the fluid-depleted trachea by surface-active instillates.

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Authors:  Ronald C Rubenstein; Shannon R Lockwood; Ellen Lide; Rebecca Bauer; Laurence Suaud; Yael Grumbach
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Review 4.  Liquid secretion properties of airway submucosal glands.

Authors:  Stephen T Ballard; Sarah K Inglis
Journal:  J Physiol       Date:  2003-12-05       Impact factor: 5.182

5.  Mucociliary transport in porcine trachea: differential effects of inhibiting chloride and bicarbonate secretion.

Authors:  Jeffrey L Cooper; Paul M Quinton; Stephen T Ballard
Journal:  Am J Physiol Lung Cell Mol Physiol       Date:  2012-11-30       Impact factor: 5.464

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7.  High vascular pressure-induced lung injury requires P450 epoxygenase-dependent activation of TRPV4.

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Authors:  Lucy A Chambers; Brett M Rollins; Robert Tarran
Journal:  Respir Physiol Neurobiol       Date:  2007-06-17       Impact factor: 1.931

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