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Hyposecretion of fluid from tracheal submucosal glands of CFTR-deficient pigs
Nam Soo Joo, Hyung-Ju Cho, Monal Khansaheb, Jeffrey J. Wine
Nam Soo Joo, Hyung-Ju Cho, Monal Khansaheb, Jeffrey J. Wine
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Research Article

Hyposecretion of fluid from tracheal submucosal glands of CFTR-deficient pigs

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Abstract

Cystic fibrosis (CF) results from mutations that disrupt CF transmembrane conductance regulator (CFTR), an anion channel found mainly in apical membranes of epithelial cells. CF leads to chronic infection of the airways with normally innocuous bacteria and fungi. Hypotheses to explain the pathophysiology of CF airways have been difficult to test because mouse models of CF do not develop human-like airway disease. The recent production of pigs lacking CFTR and pigs expressing the most common CF-causing CFTR mutant, ΔF508, provide another model that might help clarify the pathophysiology of CF airway disease. Here, we studied individual submucosal glands from 1-day-old piglets in situ in explanted tracheas, using optical methods to monitor mucus secretion rates from multiple glands in parallel. Secretion rates from control piglets (WT and CFTR+/–) and piglets with CF-like disease (CFTR–/– and CFTR–/ΔF508) were measured under 5 conditions: unstimulated (to determine basal secretion), stimulated with forskolin, stimulated with carbachol, stimulated with substance P, and, as a test for synergy, stimulated with forskolin and a low concentration of carbachol. Glands from piglets with CF-like disease responded qualitatively to all agonists like glands from human patients with CF, producing virtually no fluid in response to stimulation with forskolin and substantially less in response to all other agonists except carbachol. These data are a step toward determining whether gland secretory defects contribute to CF airway disease.

Authors

Nam Soo Joo, Hyung-Ju Cho, Monal Khansaheb, Jeffrey J. Wine

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Figure 3

Responses to SubP.

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Responses to SubP.
(A and B) Mean cumulative mucus volume from 7–9 contr...
(A and B) Mean cumulative mucus volume from 7–9 control glands of a 1-day-old CFTR+/– piglet (A) and 3–9 glands of a 1-day-old CFTR–/ΔF508 piglet (B). Stimulation by the indicated agonists is represented by horizontal bars. (C) Secretory response rates for all glands tested with 1 μM SubP. Each symbol represents a single gland; horizontal bars denote means for 49 control (median, 90.1 pl/min/gland) and 48 CF (median, 23.4 pl/min/gland) glands. All glands had been previously tested with Fsk and low-dose carbachol; the response to SubP alone was not tested in these experiments. (D) Summary data for 4 control and 5 CF piglets tested with 1 μM SubP. *P = 0.014.

Copyright © 2026 American Society for Clinical Investigation
ISSN: 0021-9738 (print), 1558-8238 (online)

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