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Updated: Dec 21, 2025

Dissecting Innate Immune Signaling in Viral Evasion of Cytokine Production
Published on: March 2, 2014
A gammaherpesvirus licenses CD8 T cells to protect the host from pneumovirus-induced immunopathologies
Mickaël Dourcy1, Céline Maquet1, Lorène Dams1
1Immunology-Vaccinology Laboratory, Department of Infectious and Parasitic Diseases, FARAH, University of Liège, 4000, Liège, Belgium.
Insights
Previous gammaherpesvirus (γHV) infection protects against severe respiratory syncytial virus (RSV) disease and vaccine-enhanced illness. CD8 T cells are crucial for this protective immune response against RSV.
Area of Science:
- Immunology
- Virology
- Vaccinology
Background:
- Human respiratory syncytial virus (RSV) causes severe infant infections, but effective vaccines are lacking due to vaccine-enhanced respiratory disease.
- Individual differences in RSV severity may relate to prior microbial exposures, influencing immune responses.
Purpose of the Study:
- To investigate the impact of gammaherpesvirus (γHV) co-infection on RSV immunopathology and vaccine responses.
- To identify immune mechanisms underlying protection against RSV-associated diseases.
Main Methods:
- Animal models of RSV infection and vaccination.
- Analysis of immune cell populations, particularly CD8 T cells, following γHV and RSV exposure.
Main Results:
- Prior γHV infection conferred protection against both primary RSV infection and formalin-inactivated RSV vaccine-enhanced disease.
- CD8 T cells were identified as essential mediators of the protective effect conferred by γHV infection against RSV.
Conclusions:
- Gammaherpesvirus infection can modulate the immune system to protect against severe RSV outcomes, including vaccine-enhanced disease.
- These findings suggest novel vaccine strategies for RSV that leverage cross-protective immune responses induced by persistent viral infections.
Abstract:
Human respiratory syncytial virus (RSV) is a pneumovirus that causes severe infections in infants worldwide. Despite intensive research, safe and effective vaccines against RSV have remained elusive. The main reason is that RSV infection of children previously immunized with formalin-inactivated-RSV vaccines has been associated with exacerbated pathology, a phenomenon called RSV vaccine-enhanced respiratory disease. In parallel, despite the high RSV prevalence, only a minor proportion of children develop severe diseases. Interestingly, variation in the immune responses against RSV or following RSV vaccination could be linked with differences of exposure to microbes during childhood. Gammaherpesviruses (γHVs), such as the Epstein-Barr virus, are persistent viruses that deeply influence the immune system of their host and could therefore affect the development of pneumovirus-induced immunopathologies for the long term. Here, we showed that a previous ɣHV infection protects against both pneumovirus vaccine-enhanced disease and pneumovirus primary infection and that CD8 T cells are essential for this protection. These observations shed a new light on the understanding of pneumovirus-induced diseases and open new perspectives for the development of vaccine strategies.
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