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An Improved and High Throughput Respiratory Syncytial Virus (RSV) Micro-neutralization Assay
Published on: January 26, 2019
Neonatal antibody responses are attenuated by interferon-γ produced by NK and T cells during RSV infection
John S Tregoning1, Belinda Lei Wang, Jacqueline U McDonald
1Mucosal Infection and Immunity Group, Section of Infectious Diseases, Department of Medicine, Imperial College London, London W2 1PG, United Kingdom. john.tregoning@imperial.ac.uk
Insights
Neonatal respiratory syncytial virus (RSV) infection leads to low antibody responses. Interferon-gamma (IFN-γ) produced by cellular immunity inhibits antibody production, impacting vaccine development.
Area of Science:
- Immunology
- Virology
- Pediatrics
Background:
- Respiratory syncytial virus (RSV) is a leading cause of infant hospitalization.
- Current vaccines are lacking, and natural infection offers poor protection against reinfection.
Purpose of the Study:
- To investigate the immunological basis for poor antibody responses following neonatal RSV infection.
- To understand the role of cellular immunity and cytokines in neonatal anti-RSV antibody production.
Main Methods:
- Comparison of immune responses in neonatal and adult mice infected with RSV.
- Depletion of specific immune cells (CD4+, CD8+, NK cells) and cytokine (IFN-γ) blockade during neonatal infection.
- Infection with a recombinant RSV engineered to produce IFN-γ.
Main Results:
- Neonatal mice exhibited low, CD4-independent antibody responses to RSV, unlike adult mice.
- Depleting NK cells, CD4+ and CD8+ T cells, or blocking IFN-γ significantly increased anti-RSV antibody titers in neonates.
- Engineered IFN-γ production by RSV reduced antibody titers in neonates.
Conclusions:
- Strong cellular immune responses, particularly IFN-γ production, inhibit antibody responses in early life.
- Vaccines inducing IFN-γ may offer reduced protection in infants, suggesting a need for tailored vaccine strategies.
Abstract:
Respiratory syncytial virus (RSV) infects most children in the first year of life and is a major single cause of hospitalization in infants and young children. There is no effective vaccine, and antibody generated by primary neonatal infection is poorly protective against reinfection even with antigenically homologous viral strains. Studying the immunological basis of these observations in neonatal mice, we found that antibody responses to infection were low and unaffected by CD4 depletion, in contrast with adult mice, which had stronger CD4-dependent antibody responses. Natural killer cell depletion or codepletion of CD4(+) and CD8(+) cells during neonatal RSV infection caused a striking increase in anti-RSV antibody titer. These cells are major sources of the cytokine IFN-γ, and blocking IFN-γ also enhanced RSV-specific antibody responses in neonates. In addition, infection with a recombinant RSV engineered to produce IFN-γ reduced antibody titer, confirming that IFN-γ plays a pivotal role in inhibition of antibody responses after neonatal infection. These unexpected findings show that the induction of a strong cellular immune response may limit antibody responses in early life and that vaccines that induce IFN-γ-secreting cells might, in some situations, be less protective than those that do not.
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