Pathological mucus and impaired mucus clearance in cystic fibrosis patients result from increased concentration, not altered pH
David B. Hill, Robert F. Long, William J. Kissner, Eyad Atieh, Ian C. Garbarine, Matthew R. Markovetz, Nicholas C. Fontana, Matthew Christy, Mehdi Habibpour, Robert Tarran, M. Gregory Forest, Richard C. Boucher, Brian Button
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Source: Crossref
Published: Oct 25, 2018
DOI: 10.1183/13993003.01297-2018
Open original source ↗Source abstract
Cystic fibrosis (CF) is a recessive genetic disease that is characterised by airway mucus plugging and reduced mucus clearance. There are currently alternative hypotheses that attempt to describe the abnormally viscous and elastic mucus that is a hallmark of CF airways disease, including: 1) loss of CF transmembrane regulator (CFTR)-dependent airway surface volume (water) secretion, producing mucus hyperconcentration-dependent increased viscosity, and 2) impaired bicarbonate secretion by CFTR, producing acidification of airway surfaces and increased mucus viscosity. A series of experiments was conducted to determine the contributions of mucus concentration versus pH to the rheological properties of airway mucus across length scales from the nanoscopic to macroscopic. For length scales greater than the nanoscopic, i.e. those relevant to mucociliary clearance, the effect of mucus concentration dominated over the effect of airway acidification. Mucus hydration and chemical reduction of disulfide bonds that connect mucin monomers are more promising therapeutic approaches than alkalisation.
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