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Published on: March 24, 2015
IFN-λ drives distinct lung immune landscape changes and antiviral responses in human metapneumovirus infection
Jorna Sojati1, Olivia B Parks1, Yu Zhang1
1Department of Pediatrics, University of Pittsburgh School of Medicine, Pittsburgh, Pennsylvania, USA.
Abstract:
Human metapneumovirus (HMPV) is a primary cause of acute respiratory infection, yet there are no approved vaccines or antiviral therapies for HMPV. Early host responses to HMPV are poorly characterized, and further understanding could identify important antiviral pathways. Type III interferon (IFN-λ) displays potent antiviral activity against respiratory viruses and is being investigated for therapeutic use. However, its role in HMPV infection remains largely unknown. Here, we show that IFN-λ is highly upregulated during HMPV infection in vitro in human and mouse airway epithelial cells and in vivo in mice. We found through several immunological and molecular assays that type II alveolar cells are the primary producers of IFN-λ. Using mouse models, we show that IFN-λ limits lung HMPV replication and restricts virus spread from upper to lower airways but does not contribute to clinical disease. Moreover, we show that IFN-λ signaling is predominantly mediated by CD45- non-immune cells. Mice lacking IFN-λ signaling showed diminished loss of ciliated epithelial cells and decreased recruitment of lung macrophages in early HMPV infection along with higher inflammatory cytokine and interferon-stimulated gene expression, suggesting that IFN-λ may maintain immunomodulatory responses. Administration of IFN-λ for prophylaxis or post-infection treatment in mice reduced viral load without inflammation-driven weight loss or clinical disease. These data offer clinical promise for IFN-λ in HMPV treatment.
Importance:
Human metapneumovirus (HMPV) is a common respiratory pathogen and often contributes to severe disease, particularly in children, immunocompromised people, and the elderly. There are currently no licensed HMPV antiviral treatments or vaccines. Here, we report novel roles of host factor IFN-λ in HMPV disease that highlight therapeutic potential. We show that IFN-λ promotes lung antiviral responses by restricting lung HMPV replication and spread from upper to lower airways but does so without inducing lung immunopathology. Our data uncover recruitment of lung macrophages, regulation of ciliated epithelial cells, and modulation of inflammatory cytokines and interferon-stimulated genes as likely contributors. Moreover, we found these roles to be distinct and non-redundant, as they are not observed with knockout of, or treatment with, type I IFN. These data elucidate unique antiviral functions of IFN-λ and suggest IFN-λ augmentation as a promising therapeutic for treating HMPV disease and promoting effective vaccine responses.
Insights
Type III interferon (IFN-λ) effectively combats human metapneumovirus (HMPV) by limiting viral replication and spread without causing disease. This discovery highlights IFN-λ as a promising therapeutic for HMPV infections.
Area of Science:
- Immunology
- Virology
- Respiratory Medicine
Background:
- Human metapneumovirus (HMPV) is a significant cause of acute respiratory illness with no approved treatments.
- Understanding host responses to HMPV is crucial for developing effective therapies.
- Type III interferon (IFN-λ) has known antiviral properties, but its role in HMPV infection is largely uncharacterized.
Purpose of the Study:
- To investigate the role of IFN-λ in HMPV infection and its potential as a therapeutic target.
- To elucidate the mechanisms by which IFN-λ mediates antiviral responses against HMPV.
- To assess the therapeutic efficacy of IFN-λ in HMPV-infected models.
Main Methods:
- In vitro and in vivo studies using human and mouse airway epithelial cells and mouse models.
- Immunological and molecular assays to analyze IFN-λ production and signaling.
- Assessment of viral load, lung pathology, immune cell recruitment, and gene expression in HMPV-infected mice with and without IFN-λ signaling.
Main Results:
- IFN-λ is upregulated during HMPV infection, primarily produced by type II alveolar cells.
- IFN-λ limits HMPV replication and spread in the lungs without causing immunopathology.
- IFN-λ signaling, mediated by non-immune cells, influences ciliated epithelial cell integrity, macrophage recruitment, and inflammatory responses.
- Exogenous IFN-λ administration reduced viral load in mice without adverse effects.
Conclusions:
- IFN-λ plays a critical role in controlling HMPV infection by promoting antiviral immunity.
- IFN-λ's distinct, non-redundant functions suggest it as a promising therapeutic agent for HMPV.
- IFN-λ augmentation could be a valuable strategy for treating HMPV disease and enhancing vaccine efficacy.
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