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Modeling Dysplastic and Functional Lung Alveolar Repair after Influenza Infection
Published on: September 19, 2025
Inflammatory responses to pneumovirus infection in IFN-alpha beta R gene-deleted mice
Tara L Garvey1, Kimberly D Dyer, John A Ellis
1Laboratory of Allergic Diseases, National Institute of Allergy and Infectious Diseases, National Institutes of Health, Bethesda, MD 20892, USA.
Abstract:
Pneumonia virus of mice (PVM; family Paramyxoviridae) is a natural pathogen of rodents that reproduces important clinical features of severe respiratory syncytial virus infection in humans. As anticipated, PVM infection induces transcription of IFN antiviral response genes preferentially in wild-type over IFN-alphabetaR gene-deleted (IFN-alphabetaR-/-) mice. However, we demonstrate that PVM infection results in enhanced expression of eotaxin-2 (CCL24), thymus and activation-regulated chemokine (CCL17), and the proinflammatory RNase mouse eosinophil-associated RNase (mEar) 11, and decreased expression of monocyte chemotactic protein-5, IFN-gamma-inducible protein-10, and TLR-3 in lung tissue of IFN-alphabetaR-/- mice when compared with wild type. No differential expression of chemokines MIP-1alpha or MIP-2 or Th2 cytokines IL-4 or IL-5 was observed. Differential expression of proinflammatory mediators was associated with distinct patterns of lung pathology. The widespread granulocytic infiltration and intra-alveolar edema observed in PVM-infected, wild-type mice are replaced with patchy, dense inflammatory foci localized to the periphery of the larger blood vessels. Bronchoalveolar lavage fluid from IFN-alphabetaR-/- mice yielded 7- to 8-fold fewer leukocytes overall, with increased percentages of eosinophils, monocytes, and CD4+ T cells, and decreased percentage of CD8+ T cells. Differential pathology is associated with prolonged survival of the IFN-alphabetaR-/- mice (50% survival at 10.8 +/- 0.6 days vs the wild type at 9.0 +/- 0.3 days; p < 0.02) despite increased virus titers. Overall, our findings serve to identify novel transcripts that are differentially expressed in the presence or absence of IFN-alphabetaR-mediated signaling, further elucidating interactions between the IFN and antiviral inflammatory responses in vivo.
Insights
Pneumonia virus of mice (PVM) infection in mice lacking interferon-alpha/beta receptor (IFN-alphabetaR-/-) leads to altered inflammatory responses and prolonged survival. This highlights the critical role of IFN-alphabetaR signaling in PVM pathogenesis.
Area of Science:
- Virology
- Immunology
- Respiratory Medicine
Background:
- Pneumonia virus of mice (PVM) is a rodent pathogen that models human respiratory syncytial virus (RSV) infection.
- Interferon-alpha/beta receptor (IFN-alphabetaR) signaling is crucial for antiviral responses.
Purpose of the Study:
- To investigate the role of IFN-alphabetaR signaling in PVM infection.
- To identify differentially expressed genes and inflammatory mediators in the absence of IFN-alphabetaR signaling during PVM infection.
Main Methods:
- Comparison of PVM-infected wild-type and IFN-alphabetaR-/- mice.
- Analysis of gene expression in lung tissue.
- Assessment of bronchoalveolar lavage fluid cell composition.
- Evaluation of lung pathology and animal survival.
Main Results:
- PVM infection in IFN-alphabetaR-/- mice showed altered expression of chemokines (e.g., eotaxin-2, CCL17) and RNases (mEar11) compared to wild-type.
- Lung pathology in IFN-alphabetaR-/- mice featured distinct inflammatory foci and reduced leukocyte infiltration, with altered immune cell percentages.
- IFN-alphabetaR-/- mice exhibited prolonged survival despite higher virus titers.
Conclusions:
- IFN-alphabetaR signaling significantly influences the host inflammatory response and pathology during PVM infection.
- Novel transcripts differentially expressed in response to IFN-alphabetaR signaling were identified.
- These findings elucidate the interplay between interferon signaling and antiviral inflammation in vivo.
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