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Long Term Chronic Pseudomonas aeruginosa Airway Infection in Mice
Published on: March 17, 2014
Pseudomonas aeruginosa Affects Airway Epithelial Response and Barrier Function During Rhinovirus Infection
Adrian Endres1, Christian Hügel1, Helena Boland1
1Department of Respiratory Medicine and Allergology, University Hospital Frankfurt, Goethe University, Frankfurt am Main, Germany.
Abstract:
Cystic fibrosis (CF) lung disease is aggravated by recurrent and ultimately chronic bacterial infections. One of the key pathogens in adult CF lung disease is P. aeruginosa (PA). In addition to bacteria, respiratory viral infections are suggested to trigger pulmonary exacerbations in CF. To date, little is known on how chronic infections with PA influence susceptibility and response to viral infection. We investigated the interactions between PA, human rhinovirus (HRV) and the airway epithelium in a model of chronic PA infection using differentiated primary bronchial epithelial cells (pBECs) and clinical PA isolates obtained from the respiratory sample of a CF patient. Cells were repeatedly infected with either a mucoid or a non-mucoid PA isolate for 16 days to simulate chronic infection, and subsequently co-infected with HRV. Key cytokines and viral RNA were quantified by cytometric bead array, ELISA and qPCR. Proteolytic degradation of IL-6 was analyzed by Western Blots. Barrier function was assessed by permeability tests and transepithelial electric resistance measurements. Virus infection stimulated the production of inflammatory and antiviral mediators, including interleukin (IL)-6, CXCL-8, tumor necrosis factor (TNF)-α, and type I/III interferons. Co-infection with a non-mucoid PA isolate increased IL-1β protein concentrations (28.88 pg/ml vs. 6.10 pg/ml), but in contrast drastically diminished levels of IL-6 protein (53.17 pg/ml vs. 2301.33 pg/ml) compared to virus infection alone. Conditioned medium obtained from co-infections with a non-mucoid PA isolate and HRV was able to rapidly degrade recombinant IL-6 in a serine protease-dependent manner, whereas medium from individual infections or co-infections with a mucoid isolate had no such effect. After co-infection with HRV and the non-mucoid PA isolate, we detected lower mRNA levels of Forkhead box J1 (FOXJ1) and Cilia Apical Structure Protein (SNTN), markers of epithelial cell differentiation to ciliated cells. Moreover, epithelial permeability was increased and barrier function compromised compared to single infections. These data show that PA infection can influence the response of bronchial epithelial cells to viral infection. Altered innate immune responses and compromised epithelial barrier function may contribute to an aggravated course of viral infection in PA-infected airways.
Insights
Chronic Pseudomonas aeruginosa (PA) infection in cystic fibrosis (CF) airways alters epithelial response to human rhinovirus (HRV). PA impairs antiviral defenses and damages the airway barrier, potentially worsening viral exacerbations in CF patients.
Area of Science:
- Pulmonary Medicine
- Microbiology
- Immunology
Background:
- Cystic fibrosis (CF) lung disease involves chronic bacterial infections, primarily by Pseudomonas aeruginosa (PA).
- Respiratory viral infections can trigger pulmonary exacerbations in CF patients.
- The impact of chronic PA infection on susceptibility to viral infections is poorly understood.
Purpose of the Study:
- To investigate the interaction between PA, human rhinovirus (HRV), and airway epithelium in a model of chronic PA infection.
- To determine how chronic PA infection influences the airway epithelial response to HRV.
Main Methods:
- Primary bronchial epithelial cells (pBECs) from CF patients were repeatedly infected with PA (mucoid or non-mucoid) to simulate chronic infection.
- Cells were subsequently co-infected with HRV.
- Cytokine levels, viral RNA, IL-6 degradation, barrier function (permeability, transepithelial electric resistance), and gene expression (FOXJ1, SNTN) were analyzed.
Main Results:
- HRV infection alone stimulated inflammatory and antiviral mediators.
- Co-infection with non-mucoid PA increased IL-1β but significantly decreased IL-6 protein levels compared to HRV alone.
- Non-mucoid PA and HRV co-infection led to serine protease-dependent degradation of IL-6, reduced expression of ciliation markers (FOXJ1, SNTN), increased epithelial permeability, and compromised barrier function.
Conclusions:
- Chronic PA infection modulates airway epithelial responses to HRV infection.
- Altered innate immune responses, including impaired IL-6 signaling and reduced ciliation, and compromised epithelial barrier function may contribute to more severe viral infections in PA-colonized CF airways.
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