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Updated: Jan 10, 2026

An Improved and High Throughput Respiratory Syncytial Virus RSV Micro-neutralization Assay
Published on: January 26, 2019
Decreased Fc fucosylation aligns with enhanced RSV-specific antibody functionality in adults compared to young
Anke J Lakerveld1,2, Wenjun Wang3, Rutger M Schepp1
1Center for Infectious Disease Control, National Institute for Public Health and the Environment (RIVM), Bilthoven, the Netherlands.
Insights
Adult antibodies show stronger immune responses against respiratory syncytial virus (RSV) than children's antibodies, driven by specific IgG Fc features. This finding is crucial for developing effective infant RSV vaccines.
Area of Science:
- Immunology
- Vaccinology
- Virology
Background:
- Respiratory syncytial virus (RSV) causes severe infections in infants and older adults.
- Infant RSV vaccine development is challenging despite recent approvals for other groups.
- Correlates of protection are needed to improve RSV vaccination strategies, with a focus on antibody effector functions.
Purpose of the Study:
- To identify differences in respiratory syncytial virus (RSV)-specific antibody features between children and adults.
- To understand how these antibody differences influence immune functionality.
- To inform the development of improved RSV vaccination strategies for infants.
Main Methods:
- A systems serology approach was used to analyze RSV-specific IgG/IgA, IgG subclasses, avidity, and Fc glycosylation in children and adults.
- In vitro cellular assays assessed neutralization, NK cell activation, phagocytosis, and complement deposition.
- Data were collected from an observational cohort of 24-month-old children and adults.
Main Results:
- Adult antibodies demonstrated enhanced functionality compared to children's antibodies.
- Differences in avidity and glycosylation patterns were observed, potentially linked to prior RSV exposures.
- IgG Fc afucosylation was identified as a key driver of enhanced NK cell activation by RSV-specific antibodies in adults.
Conclusions:
- This study provides a comprehensive comparison of RSV-specific antibodies in children and adults.
- Findings highlight the importance of Fc-mediated effector functions, particularly IgG Fc afucosylation, in adult immune responses.
- The data will aid in identifying correlates of protection and designing targeted RSV vaccination strategies.
Background:
Respiratory syncytial virus (RSV) is a major cause of severe respiratory tract infections in infants and older adults. While RSV vaccines have recently been approved for older adults and pregnant women, and newborns can be protected through monoclonal antibody immunization, vaccine development for infants remains challenging. Understanding immunological differences between target groups is essential for improving vaccination strategies, but no clear correlates of protection have been identified yet. Antibody Fc-mediated effector functions may play an important role. Here, we aim to delineate RSV-specific antibody features underlying differences in antibody functionality between children and adults.
Methods:
In an observational cohort of 24-month old children and adults (n = 46 per group), we assessed RSV-specific IgG/IgA levels, IgG subclasses, avidity, Fc glycosylation, neutralization, and antibody-dependent NK cell activation, cellular phagocytosis, and complement deposition using a systems serology approach including (multiplex) bead-based immunoassays, mass-spectrometry, and in vitro cellular assays.
Results:
Here we show that, compared to children, antibodies from adults display enhanced functionality. Furthermore, RSV-specific antibodies display differences in avidity and glycosylation patterns between the two groups, which might relate to differences in the number of previous exposures. Importantly, our data strongly suggest that IgG Fc afucosylation drives the enhanced capacity of RSV-specific antibodies to activate NK cells in adults.
Conclusions:
Our data provide a detailed overview of similarities and differences between RSV-specific antibodies in children and adults. This information will support the ongoing quest for correlates of protection and the design of future vaccination strategies in different target populations.
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