Science · 1993 · 216 citations · 18 references
FibrosisMolecular PhysiologySignal TransductionFluid SecretionOsmoregulationMedicineMembrane TransportPhysiologyPathologyPulmonary PhysiologyPulmonary FibrosisMembrane BiologyChloride SecretionPharmacologyCell BiologyCellular Physiology
In cystic fibrosis (CF), absence or dysfunction of a phosphorylation-regulated chloride channel [CF transmembrane conductance regulator (CFTR)] leads to the loss or reduction of chloride secretion into the airways. Active sodium absorption is also increased in CF, and both of these ion transport changes could alter fluid transport across the airways. Under baseline conditions, cultured human airway epithelia from normal individuals absorbed fluid, and this absorption was increased in epithelia from patients with CF. In normal and CF epithelial cultures fluid absorption was inhibited by amiloride. Adenosine 3',5'-monophosphate stimulated fluid secretion in normal epithelial cultures but not in cultures from individuals with CF. In contrast, fluid secretion induced by nucleotide triphosphates (uridine triphosphate or adenosine triphosphate) was unaltered in cultures of epithelia from patients with CF, suggesting an approach to the treatment of CF.
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Richard C. Boucher, M. Jackson Stutts, Michael R. Knowles et al. · Journal of Clinical Investigation · 1986 · 559 citations · Full text
Batsheva Kerem, Julian Zielenski, D. Markiewicz et al. · Proceedings of the National Academy of Sciences · 1990 · 424 citations · Full text