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Published on: October 31, 2025
Postnatal airway growth in cystic fibrosis piglets
Ryan J Adam1,2, Mahmoud H Abou Alaiwa1, Drake C Bouzek1
1Department of Internal Medicine, University of Iowa Roy J. and Lucille A. Carver College of Medicine, Iowa City, Iowa.
Insights
Cystic fibrosis (CF) pigs show abnormal postnatal airway growth, with reduced and irregularly shaped airways. This suggests CF transmembrane conductance regulator (CFTR) is crucial for normal airway development, potentially explaining CF lung disease.
Area of Science:
- Pulmonary Medicine
- Genetics
- Developmental Biology
Background:
- Cystic fibrosis (CF) is caused by mutations in the CF transmembrane conductance regulator (CFTR) gene.
- Lung disease is the primary cause of mortality in CF patients.
- Airway development is increasingly recognized as CFTR-dependent, with potential implications for CF lung disease pathogenesis.
Purpose of the Study:
- To investigate the impact of CFTR deficiency on postnatal airway growth and lung volume.
- To test the hypothesis that CF pigs exhibit abnormal airway development after birth.
Main Methods:
- Utilized a porcine model of CF.
- Performed computed tomography (CT)-based measurements of airway morphometry and lung volume in 3-week-old non-CF and CF pigs.
Main Results:
- CF pigs displayed tracheas with reduced caliber and irregular shapes.
- Bronchial lumens in CF pigs were smaller proximally, irregularly shaped, and less distensible.
- Significant differences in airway caliber and shape were observed between CF and non-CF pigs.
Conclusions:
- Lack of CFTR function leads to aberrant postnatal airway growth and development.
- These airway growth defects may significantly contribute to the pathogenesis of CF lung disease.
- Findings highlight the importance of CFTR in normal airway development and suggest potential therapeutic targets.
Abstract:
Mutations in the gene encoding the cystic fibrosis (CF) transmembrane conductance regulator (CFTR) anion channel cause CF. The leading cause of death in the CF population is lung disease. Increasing evidence suggests that in utero airway development is CFTR-dependent and that developmental abnormalities may contribute to CF lung disease. However, relatively little is known about postnatal CF airway growth, largely because such studies are limited in humans. Therefore, we examined airway growth and lung volume in a porcine model of CF. We hypothesized that CF pigs would have abnormal postnatal airway growth. To test this hypothesis, we performed CT-based airway and lung volume measurements in 3-wk-old non-CF and CF pigs. We found that 3-wk-old CF pigs had tracheas of reduced caliber and irregular shape. Their bronchial lumens were reduced in size proximally but not distally, were irregularly shaped, and had reduced distensibility. Our data suggest that lack of CFTR results in aberrant postnatal airway growth and development, which could contribute to CF lung disease pathogenesis.NEW & NOTEWORTHY This CT scan-based study of airway morphometry in the cystic fibrosis (CF) postnatal period is unique, as analogous studies in humans are greatly limited for ethical and technical reasons. Findings such as reduced airway lumen area and irregular caliber suggest that airway growth and development are CF transmembrane conductance regulator-dependent and that airway growth defects may contribute to CF lung disease pathogenesis.
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