Rhinovirus infection of the airway epithelium enhances mast cell immune responses via epithelial-derived interferons

Ryan C Murphy1, Ying Lai1, Matthew C Altman2

  • 1Division of Pulmonary, Critical Care, and Sleep Medicine, Seattle, Wash; Center for Lung Biology, University of Washington, Seattle, Wash.

Abstract

Insights

Airway epithelial cells and mast cells communicate during rhinovirus infections in asthma. Epithelial interferons influence mast cell responses, impacting type 2 inflammation and antiviral defenses in the airway.

Area of Science:

  • Immunology
  • Respiratory Medicine
  • Cell Biology

Background:

  • Mast cells (MCs) in airway epithelium are linked to asthma dysfunction.
  • The interaction between airway epithelial cells (AECs) and MCs in asthma is not fully understood.
  • Rhinovirus (RV) infections trigger asthma exacerbations, and AECs in asthmatics may show impaired antiviral responses.

Purpose of the Study:

  • To investigate the crosstalk between AECs and MCs following epithelial RV infection using an ex vivo coculture model.
  • To elucidate the role of epithelial-derived mediators in modulating MC function during viral infections.

Main Methods:

  • Primary AECs from children with asthma and healthy controls were cultured with LAD2 MCs.
  • AECs were infected with RV16, and gene expression was analyzed via RNA sequencing.
  • Real-time quantitative PCR assessed the impact of epithelial-derived interferons on MCs.

Main Results:

  • MCs upregulated proinflammatory and antiviral genes in AECs.
  • RV16 infection induced significant changes in MC gene expression, including antiviral, leukocyte activation, and type 2 inflammation pathways.
  • Epithelial-derived IFN-β was shown to induce type 2 gene expression in MCs.

Conclusions:

  • Significant crosstalk exists between AECs and MCs in the asthmatic airway epithelium.
  • Epithelial-derived interferons modulate MC immune responses, including specific type 2 genes, beyond their antiviral role.
  • These findings highlight a complex interplay influencing asthma pathogenesis during viral infections.

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