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A ferret model of COPD-related chronic bronchitis
S. Vamsee Raju, … , Mark T. Dransfield, Steven M. Rowe
S. Vamsee Raju, … , Mark T. Dransfield, Steven M. Rowe
Published September 22, 2016
Citation Information: JCI Insight. 2016;1(15):e87536. https://doi.org/10.1172/jci.insight.87536.
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Resource and Technical Advance Pulmonology

A ferret model of COPD-related chronic bronchitis

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Abstract

Chronic obstructive pulmonary disease (COPD) is the third leading cause of death in the US. The majority of COPD patients have symptoms of chronic bronchitis, which lacks specific therapies. A major impediment to therapeutic development has been the absence of animal models that recapitulate key clinical and pathologic features of human disease. Ferrets are well suited for the investigation of the significance of respiratory diseases, given prior data indicating similarities to human airway physiology and submucosal gland distribution. Here, we exposed ferrets to chronic cigarette smoke and found them to approximate complex clinical features of human COPD. Unlike mice, which develop solely emphysema, smoke-exposed ferrets exhibited markedly higher numbers of early-morning spontaneous coughs and sporadic infectious exacerbations as well as a higher level of airway obstruction accompanied by goblet cell metaplasia/hyperplasia and increased mucus expression in small airways, indicative of chronic bronchitis and bronchiolitis. Overall, we demonstrate the first COPD animal model exhibiting clinical and pathologic features of chronic bronchitis to our knowledge, providing a key advance that will greatly facilitate the preclinical development of novel treatments for this disease.

Authors

S. Vamsee Raju, Hyunki Kim, Stephen A. Byzek, Li Ping Tang, John E. Trombley, Patricia Jackson, Lawrence Rasmussen, J. Michael Wells, Emily Falk Libby, Erik Dohm, Lindy Winter, Sharon L. Samuel, Kurt R. Zinn, J. Edwin Blalock, Trenton R. Schoeb, Mark T. Dransfield, Steven M. Rowe

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Figure 4

Lung function analyses in a ferret model of COPD.

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Lung function analyses in a ferret model of COPD.
Functional estimate of...
Functional estimate of airway obstruction in ferrets exposed to cigarette smoke or their corresponding air controls was carried out using a forced oscillometry-based system. (A) Compared with control ferrets, ferrets that underwent chronic smoke exposure for 6 months exhibited significantly diminished inspiratory capacity, a sensitive marker of airway obstruction. (B) Newtonian resistance, a measure of airway resistance of the conducting airways, was elevated in COPD ferrets. (C and D) Tissue damping (C), a measure of tissue elastance, and quasistatic compliance (D) were not significantly affected by smoking. n = 9–12/group. *P < 0.05.

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