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Impacts of allergic airway inflammation on lung pathology in a mouse model of influenza A virus infection

Influenza A virus is the respiratory pathogen responsible for influenza. Infection by the 2009 pandemic influenza A (H1N1) virus caused severe lower airway inflammation and pneumonia. Asthma is a chronic inflammatory disorder of the airways that affects the entire brachial tree, and was one of the c...

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Autores principales: Kawaguchi, Akira, Suzuki, Tadaki, Ohara, Yuki, Takahashi, Kenta, Sato, Yuko, Ainai, Akira, Nagata, Noriyo, Tashiro, Masato, Hasegawa, Hideki
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5330494/
https://www.ncbi.nlm.nih.gov/pubmed/28245238
http://dx.doi.org/10.1371/journal.pone.0173008
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author Kawaguchi, Akira
Suzuki, Tadaki
Ohara, Yuki
Takahashi, Kenta
Sato, Yuko
Ainai, Akira
Nagata, Noriyo
Tashiro, Masato
Hasegawa, Hideki
author_facet Kawaguchi, Akira
Suzuki, Tadaki
Ohara, Yuki
Takahashi, Kenta
Sato, Yuko
Ainai, Akira
Nagata, Noriyo
Tashiro, Masato
Hasegawa, Hideki
author_sort Kawaguchi, Akira
collection PubMed
description Influenza A virus is the respiratory pathogen responsible for influenza. Infection by the 2009 pandemic influenza A (H1N1) virus caused severe lower airway inflammation and pneumonia. Asthma is a chronic inflammatory disorder of the airways that affects the entire brachial tree, and was one of the commonest underlying medical conditions among patients hospitalized with the 2009 pandemic influenza virus infection. Although respiratory virus infections are the major causes of asthma exacerbation, the mechanism by which influenza exacerbates asthma is poorly understood. Animal models of disease comorbidity are crucial to understanding host-pathogen interactions and elucidating complex pathologies. Existing murine models of influenza virus infection in asthmatics show that asthmatic mice are highly resistant to influenza virus infection, which contradicts clinical observations in humans. Here, we developed a murine model of influenza virus/asthma comorbidity using NC/Nga mice, which are highly sensitive to allergic reactions such as atopic dermatitis and allergic airway inflammation. This model was then used to examine the impact of allergic airway inflammation on lung pathology in the 2009 pandemic influenza virus infected mice. The results showed that induction of acute allergic airway inflammation in pre-existing influenza virus infection had additive effects on exacerbation of lung pathology, which mirrors findings in human epidemiological studies. In contrast, pre-existing allergic airway inflammation protected from subsequent influenza virus infection, which was compatible with those of previous murine models of influenza virus infection in asthmatic mice. These variable outcomes of this murine model indicate that the temporal relation between allergic airway inflammation and influenza virus infection might play a critical role in asthma and influenza comorbidity. Thus, this murine model will further our understanding of how influenza virus infection affects an asthmatic host and may aid the development of strategies to improve treatments and outcomes for asthmatics harboring influenza virus infection.
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spelling pubmed-53304942017-03-09 Impacts of allergic airway inflammation on lung pathology in a mouse model of influenza A virus infection Kawaguchi, Akira Suzuki, Tadaki Ohara, Yuki Takahashi, Kenta Sato, Yuko Ainai, Akira Nagata, Noriyo Tashiro, Masato Hasegawa, Hideki PLoS One Research Article Influenza A virus is the respiratory pathogen responsible for influenza. Infection by the 2009 pandemic influenza A (H1N1) virus caused severe lower airway inflammation and pneumonia. Asthma is a chronic inflammatory disorder of the airways that affects the entire brachial tree, and was one of the commonest underlying medical conditions among patients hospitalized with the 2009 pandemic influenza virus infection. Although respiratory virus infections are the major causes of asthma exacerbation, the mechanism by which influenza exacerbates asthma is poorly understood. Animal models of disease comorbidity are crucial to understanding host-pathogen interactions and elucidating complex pathologies. Existing murine models of influenza virus infection in asthmatics show that asthmatic mice are highly resistant to influenza virus infection, which contradicts clinical observations in humans. Here, we developed a murine model of influenza virus/asthma comorbidity using NC/Nga mice, which are highly sensitive to allergic reactions such as atopic dermatitis and allergic airway inflammation. This model was then used to examine the impact of allergic airway inflammation on lung pathology in the 2009 pandemic influenza virus infected mice. The results showed that induction of acute allergic airway inflammation in pre-existing influenza virus infection had additive effects on exacerbation of lung pathology, which mirrors findings in human epidemiological studies. In contrast, pre-existing allergic airway inflammation protected from subsequent influenza virus infection, which was compatible with those of previous murine models of influenza virus infection in asthmatic mice. These variable outcomes of this murine model indicate that the temporal relation between allergic airway inflammation and influenza virus infection might play a critical role in asthma and influenza comorbidity. Thus, this murine model will further our understanding of how influenza virus infection affects an asthmatic host and may aid the development of strategies to improve treatments and outcomes for asthmatics harboring influenza virus infection. Public Library of Science 2017-02-28 /pmc/articles/PMC5330494/ /pubmed/28245238 http://dx.doi.org/10.1371/journal.pone.0173008 Text en © 2017 Kawaguchi et al http://creativecommons.org/licenses/by/4.0/ This is an open access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Article
Kawaguchi, Akira
Suzuki, Tadaki
Ohara, Yuki
Takahashi, Kenta
Sato, Yuko
Ainai, Akira
Nagata, Noriyo
Tashiro, Masato
Hasegawa, Hideki
Impacts of allergic airway inflammation on lung pathology in a mouse model of influenza A virus infection
title Impacts of allergic airway inflammation on lung pathology in a mouse model of influenza A virus infection
title_full Impacts of allergic airway inflammation on lung pathology in a mouse model of influenza A virus infection
title_fullStr Impacts of allergic airway inflammation on lung pathology in a mouse model of influenza A virus infection
title_full_unstemmed Impacts of allergic airway inflammation on lung pathology in a mouse model of influenza A virus infection
title_short Impacts of allergic airway inflammation on lung pathology in a mouse model of influenza A virus infection
title_sort impacts of allergic airway inflammation on lung pathology in a mouse model of influenza a virus infection
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5330494/
https://www.ncbi.nlm.nih.gov/pubmed/28245238
http://dx.doi.org/10.1371/journal.pone.0173008
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