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This purpose of this study is to determine whether nasal delivery of heated and humidified air for a period of 4 hours will improve the clearance of mucus from the lungs of patients with chronic obstructive pulmonary disease (COPD). Mucus clearance will be measured using a nuclear medicine imaging procedure called a mucociliary clearance scan. Humidified air (with added oxygen if needed) will be delivered from the Fisher and Paykel myAirvo2 heater/humidifier through an Optiflow nasal cannula.
Full description
Chronic bronchitis is a component of Chronic Obstructive Pulmonary Disease (COPD), along with emphysema. COPD is associated with smoking, exposure to environmental pollutants, or occupational exposures. In the airways mucus acts to trap inhaled toxins or pathogens. In a healthy lung mucus is cleared by mucociliary and cough clearance. Mucociliary clearance involves the synchronous motion of cilia underneath the mucus sheet that lines the airways. This drives the mucus sheet out of the airways (like a conveyer belt) continually clearing particulate and pathogens. In chronic bronchitis, mucus is overproduced due to toxic stimuli. Mucus clearance may also be defective due to airway obstruction and insufficient cough. This results in the accumulation of mucus that contributes to airway obstruction.
Therapies for improving mucus clearance may decrease the degree of airway obstruction experienced by COPD patients. Heated, high-flow, humidified air or oxygen may improve mucus clearance by hydrating the mucus in the airways and may also help to increase airway patency. A similar intervention was shown to improve mucus clearance in subjects with bronchiectasis.
The investigators have developed nuclear imaging-based methods for measuring mucus clearance from the lungs. These techniques have been applied to evaluate novel therapies for the treatment of cystic fibrosis lung disease. Here the investigators will apply these techniques to determine whether treatment with heated-humidified air will improve mucus clearance in subjects with COPD.
Study participation involves 3 visits.
Study day 1 includes:
Study days 2 and 3 include:
Participants will be asked to refrain from using short-acting beta agonist (SABA) medications for 6 hours prior to study days 2 and 3, and long-acting beta agonists (LABA) or long-acting muscarinic antagonists (LAMA) for 24 hours prior to study days 2 and 3.
Enrollment
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Inclusion criteria
Exclusion criteria
Pregnant or nursing or unwilling to perform pregnancy testing
Unwilling or unable to refrain for SABA/LABA use ahead of the study
Unable to lie recumbent for 90 min,
Clinically important pulmonary disease other than COPD (e.g. active lung infection, clinically significant bronchiectasis, pulmonary fibrosis, cystic fibrosis, hypoventilation syndrome associated with obesity, lung cancer, alpha 1 anti-trypsin deficiency and primary ciliary dyskinesia) or another diagnosed pulmonary or systemic disease that is associated with elevated peripheral eosinophil counts (e.g. allergic bronchopulmonary aspergillosis/mycosis, Churg-Strauss syndrome, hyper-eosinophilic syndrome) and/ or radiological findings suggestive of a respiratory disease other than COPD that is contributing to the subject's respiratory symptoms.
Any disorder, including, but not limited to, cardiovascular, gastrointestinal, hepatic, renal, neurological, musculoskeletal, infectious, endocrine, metabolic, hematological, psychiatric, or major physical impairment that is not stable in the opinion of the Investigator and/or could:
Treatment with systemic corticosteroids and/or antibiotics, and/or hospitalization for a COPD exacerbation within 2 weeks prior to enrollment, based on last dose of steroids or last date of hospitalization whatever occurred later
Acute upper or lower respiratory infection within 2 weeks prior to enrollment
Supplemental oxygen use at greater than 3 liters/min
Primary purpose
Allocation
Interventional model
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12 participants in 2 patient groups
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Data sourced from clinicaltrials.gov
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