Role for innate IFNs in determining respiratory syncytial virus immunopathology

Teresa R Johnson1, Sara E Mertz, Negin Gitiban

  • 1Columbus Children's Research Institute and Department of Pediatrics, Ohio State University College of Medicine and Public Health, Columbus, 43205, USA.

Insights

Respiratory syncytial virus (RSV) vaccine development is challenging. Innate interferons (IFNs) play a crucial role in determining the severity of RSV disease, influencing lung pathology and immune cell responses.

Area of Science:

  • Immunology
  • Virology
  • Respiratory Medicine

Background:

  • Respiratory syncytial virus (RSV) causes severe lower airway disease in young children.
  • No safe and effective RSV vaccine is currently available.
  • Previous RSV vaccine trials showed enhanced illness, linked to Th2 cytokine responses.

Purpose of the Study:

  • To investigate the role of interferon (IFN) signaling in RSV-induced lung pathology.
  • To determine if enhanced disease depends solely on Th2 cytokines or other IFN signaling aspects.

Main Methods:

  • Infection of knockout mice lacking specific interferon receptors (IFN-alphabetaR, IFN-gammaR, or both).
  • Analysis of immune cell populations (eosinophils, CD8+ T cells) and cytokine responses in the lungs.
  • Assessment of lung pathology, specifically eosinophilic inflammation.

Main Results:

  • Mice lacking both IFN-alphabeta and IFN-gamma receptors (IFN-alphabetagammaR(-/-)) developed predominantly eosinophilic lung disease.
  • While Th2 responses were present in multiple knockout strains, severe allergic-type inflammation was restricted to mice lacking both IFNRs.
  • Absence of CD8+ T cells in IFN-alphabetagammaR(-/-) mice led to eosinophils being the predominant leukocyte.

Conclusions:

  • CD4+ Th2 cell differentiation is necessary for allergic-type inflammation in RSV infection.
  • Innate interferons (IFNs) play a critical role in modulating the severity and nature of RSV-induced lung disease.
  • IFN signaling influences the balance of immune cells, impacting overall disease pathology.

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