Effect of antigen sensitization and challenge on oscillatory mechanics of the lung and pulmonary inflammation in obese carboxypeptidase E-deficient mice

Author:

Dahm Paul H.1,Richards Jeremy B.2,Karmouty-Quintana Harry3,Cromar Kevin R.4,Sur Sanjiv5,Price Roger E.6,Malik Farhan1,Spencer Chantal Y.7,Barreno Ramon X.1,Hashmi Syed S.8,Blackburn Michael R.3,Haque Ikram U.1,Johnston Richard A.18

Affiliation:

1. Division of Critical Care Medicine, Department of Pediatrics, The University of Texas Medical School at Houston, Houston, Texas;

2. Division of Pulmonary, Critical Care, and Sleep Medicine, Department of Medicine, Beth Israel Deaconess Medical Center, Boston, Massachusetts;

3. Department of Biochemistry and Molecular Biology, The University of Texas Medical School at Houston, Houston, Texas;

4. Department of Environmental Medicine, New York University School of Medicine, Tuxedo, New York;

5. Division of Allergy and Immunology, Department of Internal Medicine, The University of Texas Medical Branch at Galveston School of Medicine, Galveston, Texas;

6. Comparative Pathology Laboratory, Center for Comparative Medicine, Baylor College of Medicine, Houston, Texas;

7. Pediatric Pulmonary Section, Department of Pediatrics, Baylor College of Medicine, Houston, Texas; and

8. Pediatric Research Center, Department of Pediatrics, The University of Texas Medical School at Houston, Houston, Texas

Abstract

Atopic, obese asthmatics exhibit airway obstruction with variable degrees of eosinophilic airway inflammation. We previously reported that mice obese as a result of a genetic deficiency in either leptin ( ob/ ob mice) or the long isoform of the leptin receptor ( db/ db mice) exhibit enhanced airway obstruction in the presence of decreased numbers of bronchoalveolar lavage fluid (BALF) eosinophils compared with lean, wild-type mice following antigen (ovalbumin; OVA) sensitization and challenge. To determine whether the genetic modality of obesity induction influences the development of OVA-induced airway obstruction and OVA-induced pulmonary inflammation, we examined indices of these sequelae in mice obese as a result of a genetic deficiency in carboxypeptidase E, an enzyme that processes prohormones and proneuropeptides involved in satiety and energy expenditure ( Cpe fat mice). Accordingly, Cpe fat and lean, wild-type (C57BL/6) mice were sensitized to OVA and then challenged with either aerosolized PBS or OVA. Compared with genotype-matched, OVA-sensitized and PBS-challenged mice, OVA sensitization and challenge elicited airway obstruction and increased BALF eosinophils, macrophages, neutrophils, IL-4, IL-13, IL-18, and chemerin. However, OVA challenge enhanced airway obstruction and pulmonary inflammation in Cpe fat compared with wild-type mice. These results demonstrate that OVA sensitization and challenge enhance airway obstruction in obese mice regardless of the genetic basis of obesity, whereas the degree of OVA-induced pulmonary inflammation is dependent on the genetic modality of obesity induction. These results have important implications for animal models of asthma, as modeling the pulmonary phenotypes for subpopulations of atopic, obese asthmatics critically depends on selecting the appropriate mouse model.

Publisher

American Physiological Society

Subject

Physiology (medical),Physiology

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