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Airway Epithelial Cell Immunity Is Delayed During Rhinovirus Infection in Asthma and COPD

Respiratory viral infections, particularly those caused by rhinovirus, exacerbate chronic respiratory inflammatory diseases, such as asthma and chronic obstructive pulmonary disease (COPD). Airway epithelial cells are the primary site of rhinovirus replication and responsible of initiating the host...

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Autores principales: Veerati, Punnam Chander, Troy, Niamh M., Reid, Andrew T., Li, Ngan Fung, Nichol, Kristy S., Kaur, Parwinder, Maltby, Steven, Wark, Peter A. B., Knight, Darryl A., Bosco, Anthony, Grainge, Chris L., Bartlett, Nathan W.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7243842/
https://www.ncbi.nlm.nih.gov/pubmed/32499788
http://dx.doi.org/10.3389/fimmu.2020.00974
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author Veerati, Punnam Chander
Troy, Niamh M.
Reid, Andrew T.
Li, Ngan Fung
Nichol, Kristy S.
Kaur, Parwinder
Maltby, Steven
Wark, Peter A. B.
Knight, Darryl A.
Bosco, Anthony
Grainge, Chris L.
Bartlett, Nathan W.
author_facet Veerati, Punnam Chander
Troy, Niamh M.
Reid, Andrew T.
Li, Ngan Fung
Nichol, Kristy S.
Kaur, Parwinder
Maltby, Steven
Wark, Peter A. B.
Knight, Darryl A.
Bosco, Anthony
Grainge, Chris L.
Bartlett, Nathan W.
author_sort Veerati, Punnam Chander
collection PubMed
description Respiratory viral infections, particularly those caused by rhinovirus, exacerbate chronic respiratory inflammatory diseases, such as asthma and chronic obstructive pulmonary disease (COPD). Airway epithelial cells are the primary site of rhinovirus replication and responsible of initiating the host immune response to infection. Numerous studies have reported that the anti-viral innate immune response (including type I and type III interferon) in asthma is less effective or deficient leading to the conclusion that epithelial innate immunity is a key determinant of disease severity during a rhinovirus induced exacerbation. However, deficient rhinovirus-induced epithelial interferon production in asthma has not always been observed. We hypothesized that disparate in vitro airway epithelial infection models using high multiplicity of infection (MOI) and lacking genome-wide, time course analyses have obscured the role of epithelial innate anti-viral immunity in asthma and COPD. To address this, we developed a low MOI rhinovirus model of differentiated primary epithelial cells obtained from healthy, asthma and COPD donors. Using genome-wide gene expression following infection, we demonstrated that gene expression patterns are similar across patient groups, but that the kinetics of induction are delayed in cells obtained from asthma and COPD donors. Rhinovirus-induced innate immune responses were defined by interferons (type-I, II, and III), interferon response factors (IRF1, IRF3, and IRF7), TLR signaling and NF-κB and STAT1 activation. Induced gene expression was evident at 24 h and peaked at 48 h post-infection in cells from healthy subjects. In contrast, in cells from donors with asthma or COPD induction was maximal at or beyond 72–96 h post-infection. Thus, we propose that propensity for viral exacerbations of asthma and COPD relate to delayed (rather than deficient) expression of epithelial cell innate anti-viral immune genes which in turns leads to a delayed and ultimately more inflammatory host immune response.
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spelling pubmed-72438422020-06-03 Airway Epithelial Cell Immunity Is Delayed During Rhinovirus Infection in Asthma and COPD Veerati, Punnam Chander Troy, Niamh M. Reid, Andrew T. Li, Ngan Fung Nichol, Kristy S. Kaur, Parwinder Maltby, Steven Wark, Peter A. B. Knight, Darryl A. Bosco, Anthony Grainge, Chris L. Bartlett, Nathan W. Front Immunol Immunology Respiratory viral infections, particularly those caused by rhinovirus, exacerbate chronic respiratory inflammatory diseases, such as asthma and chronic obstructive pulmonary disease (COPD). Airway epithelial cells are the primary site of rhinovirus replication and responsible of initiating the host immune response to infection. Numerous studies have reported that the anti-viral innate immune response (including type I and type III interferon) in asthma is less effective or deficient leading to the conclusion that epithelial innate immunity is a key determinant of disease severity during a rhinovirus induced exacerbation. However, deficient rhinovirus-induced epithelial interferon production in asthma has not always been observed. We hypothesized that disparate in vitro airway epithelial infection models using high multiplicity of infection (MOI) and lacking genome-wide, time course analyses have obscured the role of epithelial innate anti-viral immunity in asthma and COPD. To address this, we developed a low MOI rhinovirus model of differentiated primary epithelial cells obtained from healthy, asthma and COPD donors. Using genome-wide gene expression following infection, we demonstrated that gene expression patterns are similar across patient groups, but that the kinetics of induction are delayed in cells obtained from asthma and COPD donors. Rhinovirus-induced innate immune responses were defined by interferons (type-I, II, and III), interferon response factors (IRF1, IRF3, and IRF7), TLR signaling and NF-κB and STAT1 activation. Induced gene expression was evident at 24 h and peaked at 48 h post-infection in cells from healthy subjects. In contrast, in cells from donors with asthma or COPD induction was maximal at or beyond 72–96 h post-infection. Thus, we propose that propensity for viral exacerbations of asthma and COPD relate to delayed (rather than deficient) expression of epithelial cell innate anti-viral immune genes which in turns leads to a delayed and ultimately more inflammatory host immune response. Frontiers Media S.A. 2020-05-15 /pmc/articles/PMC7243842/ /pubmed/32499788 http://dx.doi.org/10.3389/fimmu.2020.00974 Text en Copyright © 2020 Veerati, Troy, Reid, Li, Nichol, Kaur, Maltby, Wark, Knight, Bosco, Grainge and Bartlett. http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Immunology
Veerati, Punnam Chander
Troy, Niamh M.
Reid, Andrew T.
Li, Ngan Fung
Nichol, Kristy S.
Kaur, Parwinder
Maltby, Steven
Wark, Peter A. B.
Knight, Darryl A.
Bosco, Anthony
Grainge, Chris L.
Bartlett, Nathan W.
Airway Epithelial Cell Immunity Is Delayed During Rhinovirus Infection in Asthma and COPD
title Airway Epithelial Cell Immunity Is Delayed During Rhinovirus Infection in Asthma and COPD
title_full Airway Epithelial Cell Immunity Is Delayed During Rhinovirus Infection in Asthma and COPD
title_fullStr Airway Epithelial Cell Immunity Is Delayed During Rhinovirus Infection in Asthma and COPD
title_full_unstemmed Airway Epithelial Cell Immunity Is Delayed During Rhinovirus Infection in Asthma and COPD
title_short Airway Epithelial Cell Immunity Is Delayed During Rhinovirus Infection in Asthma and COPD
title_sort airway epithelial cell immunity is delayed during rhinovirus infection in asthma and copd
topic Immunology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7243842/
https://www.ncbi.nlm.nih.gov/pubmed/32499788
http://dx.doi.org/10.3389/fimmu.2020.00974
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