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Humoral and cellular immunity to RSV in infants, children and adults
C A Green1, C J Sande1, C de Lara2
1Oxford Vaccine Group, Department of Paediatrics and the NIHR Oxford Biomedical Research Centre, University of Oxford, Oxford, UK.
Insights
Naturally acquired immunity to respiratory syncytial virus (RSV) varies with age. Early life exposure may enhance immune responses, potentially reducing severe disease, suggesting infant vaccination could accelerate protective immunity.
Area of Science:
- Immunology
- Virology
- Pediatrics
Background:
- Respiratory syncytial virus (RSV) causes significant respiratory illness across all age groups.
- Naturally acquired immunity to RSV differs based on age and cumulative exposure.
- Understanding these age-related immune differences is crucial for developing effective interventions.
Purpose of the Study:
- To investigate age-dependent differences in naturally acquired immunity to RSV.
- To analyze antibody and cellular immune responses in infants, children, and adults.
- To correlate immune responses with age and presumed exposure levels.
Main Methods:
- A longitudinal observational study involving healthy infants, children, and adults.
- Analysis of blood samples for RSV-neutralizing antibodies, F/G-specific antibodies, and memory B-cell frequencies (IgG/IgA).
- Assessment of T-cell responses (IFNγ, IL-4, IL-13, IL-17) to RSV antigens.
Main Results:
- Infants and children had lower G-specific antibody titers than adults.
- F-specific and neutralizing antibody titers, along with IFNγ T-cell responses, were low in infants but comparable in children and adults.
- F-specific IgA memory B-cells were detected in healthcare workers, waning over time, while IgG memory B-cells were present in all adults.
Conclusions:
- Repeated RSV exposure in early life correlates with immune responses inversely related to severe disease frequency.
- Infant vaccination strategies targeting F-specific antibodies and cellular immunity could accelerate protective responses.
- Findings suggest a potential pathway for enhancing early-life RSV protection through vaccination.
Background:
Respiratory syncytial virus (RSV) causes respiratory disease throughout life. Here we report differences in naturally acquired immunity with age and presumed exposure.
Methods:
A longitudinal, non-interventional, observational study was performed in healthy adults (20 paediatric healthcare workers and 10 non-healthcare workers), children (10 aged 3-6 years) and infants (5 aged 2-4 months and 20 aged 6-12 months). Blood samples were analysed for RSV-neutralising antibody titre, F/Ga/Gb-specific antibody titres, F-specific IgG/IgA memory B-cell frequencies and T-cell production of IFNγ, IL-4, IL-13 and IL-17.
Results:
Serum G-specific antibody titres were significantly lower in infants and children than adults. However, serum titres of F-specific and RSV-neutralising antibody and IFNγ-producing T-cell frequencies were low or absent in the infants, but comparable between children and adults. Interestingly, F-specific memory IgA B-cells could not be detected in paediatric samples and in samples from non-healthcare workers, but recordable IgA memory B-cells were found in 9/18 paediatric healthcare workers and 2/8 non-healthcare workers at the end of the RSV season. These responses waned 4-6 months later. By contrast, F-specific IgG memory B-cells were detectable in samples from all adults without significant variation across time points. T-cells producing IL-4, IL-13 and IL-17 responses were not detectable in peripheral blood from a subset of volunteers.
Conclusions:
Repeated RSV exposure in early life generates immune responses that are inversely related to frequency of severe disease. Induction of F-specific antibody and cellular immune responses through infant vaccination might help to accelerate the development of protective immune responses at an early age. Clinicaltrials.gov reference NCT01563692 and NCT01640652.
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