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Identification and Characterization of Immunogenic RNA Species in HDM Allergens that Modulate Eosinophilic Lung Inflammation
Published on: May 30, 2020
Rhinovirus exacerbates house-dust-mite induced lung disease in adult mice
Jennifer A Phan1, Anthony Kicic2, Luke J Berry3
1Division of Clinical Sciences, Telethon Institute for Child Health Research, The University of Western Australia, Subiaco, Western Australia, Australia; Pharmacology, Pharmacy and Anaesthesiology Unit, School of Medicine and Pharmacology, The University of Western Australia, Crawley, Western Australia, Australia.
Abstract:
Human rhinovirus is a key viral trigger for asthma exacerbations. To date, murine studies investigating rhinovirus-induced exacerbation of allergic airways disease have employed systemic sensitisation/intranasal challenge with ovalbumin. In this study, we combined human-rhinovirus infection with a clinically relevant mouse model of aero-allergen exposure using house-dust-mite in an attempt to more accurately understand the links between human-rhinovirus infection and exacerbations of asthma. Adult BALB/c mice were intranasally exposed to low-dose house-dust-mite (or vehicle) daily for 10 days. On day 9, mice were inoculated with human-rhinovirus-1B (or UV-inactivated human-rhinovirus-1B). Forty-eight hours after inoculation, we assessed bronchoalveolar cellular inflammation, levels of relevant cytokines/serum antibodies, lung function and responsiveness/sensitivity to methacholine. House-dust-mite exposure did not result in a classical TH2-driven response, but was more representative of noneosinophilic asthma. However, there were significant effects of house-dust-mite exposure on most of the parameters measured including increased cellular inflammation (primarily macrophages and neutrophils), increased total IgE and house-dust-mite-specific IgG1 and increased responsiveness/sensitivity to methacholine. There were limited effects of human-rhinovirus-1B infection alone, and the combination of the two insults resulted in additive increases in neutrophil levels and lung parenchymal responses to methacholine (tissue elastance). We conclude that acute rhinovirus infection exacerbates house-dust-mite-induced lung disease in adult mice. The similarity of our results using the naturally occurring allergen house-dust-mite, to previous studies using ovalbumin, suggests that the exacerbation of allergic airways disease by rhinovirus infection could act via multiple or conserved mechanisms.
Insights
Human rhinovirus (HRV) infection worsens house-dust-mite-induced lung disease in mice, mimicking asthma exacerbations. This study used a clinically relevant model to explore HRV
Area of Science:
- Immunology
- Respiratory Medicine
- Virology
Background:
- Human rhinovirus (HRV) is a major trigger for asthma exacerbations.
- Previous studies used ovalbumin models; this study uses a house-dust-mite (HDM) model for clinical relevance.
Purpose of the Study:
- To investigate the combined effects of HRV infection and HDM exposure on allergic airways disease in mice.
- To understand the mechanisms linking HRV infection to asthma exacerbations.
Main Methods:
- Adult BALB/c mice were exposed to HDM or vehicle daily.
- Mice were inoculated with HRV-1B or UV-inactivated HRV-1B.
- Assessed bronchoalveolar lavage, cytokines, serum antibodies, lung function, and methacholine response.
Main Results:
- HDM exposure induced inflammation (macrophages, neutrophils), increased IgE and IgG1, and heightened methacholine responsiveness.
- HRV infection alone had limited effects.
- Combined HDM and HRV exposure showed additive increases in neutrophils and lung elastance.
Conclusions:
- Acute HRV infection exacerbates HDM-induced lung disease in mice.
- HRV exacerbation of allergic airways disease may involve conserved mechanisms, regardless of the allergen type.
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