Infection with human metapneumovirus predisposes mice to severe pneumococcal pneumonia
Irena Kukavica-Ibrulj1, Marie-Eve Hamelin, Gregory A Prince
1Research Center in Infectious Diseases of the Centre Hospitalier Universitaire de Québec and Laval University, Quebec City, Quebec, Canada.
Abstract:
Human metapneumovirus (hMPV) is a recently described paramyxovirus that causes respiratory tract infections. Prior clinical studies have highlighted the importance of respiratory viruses, such as influenza virus, in facilitating secondary bacterial infections and increasing host immunopathology. The objective of the present work was to evaluate the effects of initial viral infection with hMPV or influenza A virus followed by Streptococcus pneumoniae superinfection 5 days later in a murine model. Both groups of superinfected mice demonstrated significant weight loss (mean of 15%) and higher levels of airway obstruction (mean enhanced pause value of 2.7) compared to those of mice infected with hMPV, influenza virus, or pneumococcus alone. Bacterial counts increased from 5 x 10(2) CFU/lung in mice infected with pneumococcus only to 10(7) and 10(9) CFU/lung in mice with prior infections with hMPV and influenza A virus, respectively. A more pronounced interstitial and alveolar inflammation correlated with higher levels of inflammatory cytokines and chemokines such as interleukin-1alpha (IL-1alpha), IL-1beta, IL-6, IL-12, monocyte chemotactic protein 1, macrophage inflammatory protein 1alpha, KC, and granulocyte colony-stimulating factor, as well as greater expression of Toll-like receptor 2 (TLR2), TLR6, TLR7, and TLR13 in the lungs of superinfected animals compared to results for single infections, with similar immunological effects seen in both coinfection models. Prior infection with either hMPV or influenza A virus predisposes mice to severe pneumococcus infection.
Insights
Prior infection with human metapneumovirus (hMPV) or influenza A virus significantly worsens Streptococcus pneumoniae infections in mice. This coinfection model shows increased inflammation and bacterial load, highlighting viral priming for severe bacterial outcomes.
Area of Science:
- Immunology
- Virology
- Pulmonology
Background:
- Respiratory viruses like influenza can enable secondary bacterial infections.
- Human metapneumovirus (hMPV) is a paramyxovirus causing respiratory illness.
- Understanding viral-bacterial coinfection is crucial for managing respiratory diseases.
Purpose of the Study:
- To investigate the impact of hMPV or influenza A virus pre-infection on Streptococcus pneumoniae superinfection.
- To evaluate the resulting immunopathology and disease severity in a murine model.
Main Methods:
- Mice were infected with hMPV or influenza A virus, followed by Streptococcus pneumoniae superinfection 5 days later.
- Compared outcomes to mice infected with a single pathogen.
- Assessed weight loss, airway obstruction, bacterial counts, lung inflammation, cytokine/chemokine levels, and Toll-like receptor expression.
Main Results:
- Superinfected mice showed significant weight loss and airway obstruction compared to single-infection groups.
- Bacterial lung counts were dramatically higher (10^7-10^9 CFU/lung) in superinfected mice.
- Increased interstitial/alveolar inflammation, elevated cytokine/chemokine levels, and heightened TLR expression were observed in superinfected lungs.
Conclusions:
- Prior hMPV or influenza A virus infection predisposes mice to severe Streptococcus pneumoniae superinfection.
- Coinfection models exhibit similar immunological responses, characterized by heightened inflammation and bacterial burden.
- These findings underscore the critical role of viral infections in facilitating secondary bacterial pneumonia.
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