Phenotypic Responses of Differentiated Asthmatic Human Airway Epithelial Cultures to Rhinovirus
Open Access
- 23 February 2015
- journal article
- research article
- Published by Public Library of Science (PLoS) in PLOS ONE
- Vol. 10 (2) , e0118286
- https://doi.org/10.1371/journal.pone.0118286
Abstract
Human airway epithelial cells are the principal target of human rhinovirus (HRV), a common cold pathogen that triggers the majority of asthma exacerbations. The objectives of this study were 1) to evaluate an in vitro air liquid interface cultured human airway epithelial cell model for HRV infection, and 2) to identify gene expression patterns associated with asthma intrinsically and/or after HRV infection using this model. Air-liquid interface (ALI) human airway epithelial cell cultures were prepared from 6 asthmatic and 6 non-asthmatic donors. The effects of rhinovirus RV-A16 on ALI cultures were compared. Genome-wide gene expression changes in ALI cultures following HRV infection at 24 hours post exposure were further analyzed using RNA-seq technology. Cellular gene expression and cytokine/chemokine secretion were further evaluated by qPCR and a Luminex-based protein assay, respectively. ALI cultures were readily infected by HRV. RNA-seq analysis of HRV infected ALI cultures identified sets of genes associated with asthma specific viral responses. These genes are related to inflammatory pathways, epithelial structure and remodeling and cilium assembly and function, including those described previously (e.g. CCL5, CXCL10 and CX3CL1, MUC5AC, CDHR3), and novel ones that were identified for the first time in this study (e.g. CCRL1). ALI-cultured human airway epithelial cells challenged with HRV are a useful translational model for the study of HRV-induced responses in airway epithelial cells, given that gene expression profile using this model largely recapitulates some important patterns of gene responses in patients during clinical HRV infection. Furthermore, our data emphasize that both abnormal airway epithelial structure and inflammatory signaling are two important asthma signatures, which can be further exacerbated by HRV infection.Keywords
This publication has 47 references indexed in Scilit:
- Rhinoviruses, allergic inflammation, and asthmaImmunological Reviews, 2011
- The air-liquid interface and use of primary cell cultures are important to recapitulate the transcriptional profile of in vivo airway epitheliaAmerican Journal of Physiology-Lung Cellular and Molecular Physiology, 2011
- An RNA replication-center assay for high content image-based quantifications of human rhinovirus and coxsackievirus infectionsVirology Journal, 2010
- The ABCs of Rhinoviruses, Wheezing, and AsthmaJournal of Virology, 2010
- T-helper Type 2–driven Inflammation Defines Major Subphenotypes of AsthmaAmerican Journal of Respiratory and Critical Care Medicine, 2009
- Rhinovirus-induced modulation of gene expression in bronchial epithelial cells from subjects with asthmaMucosal Immunology, 2009
- In vitro susceptibility to rhinovirus infection is greater for bronchial than for nasal airway epithelial cells in human subjectsJournal of Allergy and Clinical Immunology, 2009
- Basal Cells of Differentiated Bronchial Epithelium Are More Susceptible to Rhinovirus InfectionAmerican Journal of Respiratory Cell and Molecular Biology, 2008
- Genome-wide profiling identifies epithelial cell genes associated with asthma and with treatment response to corticosteroidsProceedings of the National Academy of Sciences, 2007
- Gene set enrichment analysis: A knowledge-based approach for interpreting genome-wide expression profilesProceedings of the National Academy of Sciences, 2005