1. Mouse Models of Asthma
- Author
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Bart N. Lambrecht, Nincy Debeuf, Mary J. van Helden, Eline Haspeslagh, and Hamida Hammad
- Subjects
0301 basic medicine ,Ovalbumin ,Immunoglobulin E ,medicine.disease_cause ,Mice ,03 medical and health sciences ,Th2 Cells ,Allergen ,immune system diseases ,Eosinophilia ,medicine ,Animals ,Humans ,Sensitization ,Asthma ,House dust mite ,Metaplasia ,biology ,medicine.diagnostic_test ,business.industry ,Pyroglyphidae ,General Medicine ,respiratory system ,Flow Cytometry ,medicine.disease ,biology.organism_classification ,respiratory tract diseases ,Disease Models, Animal ,030104 developmental biology ,Bronchoalveolar lavage ,medicine.anatomical_structure ,Acute Disease ,Immunology ,biology.protein ,Alum Compounds ,Cytokines ,Goblet Cells ,medicine.symptom ,business ,Bronchoalveolar Lavage Fluid - Abstract
Allergic asthma is a chronic inflammatory disease of the conducting airways characterized by the presence of allergen-specific IgE, Th2 cytokine production, eosinophilic airway inflammation, bronchial hyperreactivity, mucus overproduction, and structural changes in the airways. Investigators have tried to mimic these features of human allergic asthma in murine models. Whereas the surrogate allergen ovalbumin has been extremely valuable for unravelling underlying mechanisms of the disease, murine asthma models depend nowadays on naturally occurring allergens, such as house dust mite (HDM), cockroach, and Alternaria alternata. Here we describe a physiologically relevant model of acute allergic asthma based on sensitization and challenge with HDM extracts, and compare it with the ovalbumin/alum-induced asthma model. Moreover, we propose a detailed readout of the asthma phenotype, determining the degree of eosinophilia in bronchoalveolar lavage fluids by flow cytometry, visualizing goblet cell metaplasia, and measuring Th cytokine production by lung-draining mediastinal lymph node cells restimulated with HDM. © 2016 by John Wiley & Sons, Inc.
- Published
- 2016
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