ArticleAmerican journal of physiology. Lung cellular and molecular physiology2025
Novel murine partial tracheal occlusion model with altered respiratory dynamics.
Article in American journal of physiology. Lung cellular and molecular physiology, 2025. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Not yet cited in PubMed.
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Abstract
The respiratory system is integrated to optimize efficiency. Dysfunction of one element often impacts others. For example, in chronic obstructive pulmonary disease (COPD), both obstructive sleep apnea and small airways dysfunction are associated with worse emphysema. In bronchopulmonary dysplasia (BPD), cystic lung disease and tracheobronchomalacia are often comorbid. Furthermore, childhood asthma predisposes to COPD. Although mouse models have elucidated key mechanisms in respiratory disease, to date, no models have accounted for how conducting airway dysfunction impacts alveolar structure and function. We report a novel murine partial tracheal occlusion (PTO) model and a complementary esophageal pressure monitoring technique to begin answering these questions. A 50% reduction in trachea diameter was achieved using a 19-gauge needle to prevent complete closure of a microsurgical clip on the anterior trachea. Esophageal pressure was measured by advancing a 3.5-French pressure transducing catheter 3 cm into the esophagus. In 8-10-wk-old C57BL/6 mice, PTO did not cause appreciable alteration of distal lung structure despite a 10-mmHg increase in transpulmonary pressure gradient. However, PTO after tracheal aspiration of 0.5 units of porcine pancreatic elastase (PPE) resulted in 20 µm greater (
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