Study supports effectiveness of RSV preventive antibodies for infants, offers new way to monitor viral resistance
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An analysis of more than 60,000 respiratory syncytial virus (RSV) sequences from around the world found that viral variants associated with resistance to current RSV prevention tools remain rare, according to a study published in Nature.
The findings support the continued effectiveness of preventive antibodies and vaccines used to protect infants and other vulnerable populations from severe RSV infections, while providing new insights that could help guide the development of future prevention strategies.
"It's so incredible as a pediatrician, and as a mom, that we now have these prevention tools for RSV," said first author Cassandra Simonich, MD, Ph.D., a research associate at Fred Hutch Cancer Center and a pediatric infectious diseases physician at Seattle Children's.
"We know these tools work really well in reducing severe RSV infections in babies. We want to ensure that these tools stay effective, and this study is a step toward ensuring our prevention methods keep working."
RSV prevention tools include monoclonal antibodies for infants and vaccines for adults, which, when given in advance of infection, can prevent and reduce the severity of infection. Infants, older adults with weakened immune systems and people who are immunocompromised—such as those undergoing cancer treatment—are considered vulnerable to RSV and are recommended to receive RSV prevention therapeutics.
How protection is delivered
The other prevention tool is to give an RSV vaccine to people who are in their third trimester of pregnancy, which then leads to anti-RSV antibodies in the fetus. Those antibodies linger after birth to prevent RSV infection.
While prevention strategies have been successful so far, infectious disease experts have been on the lookout for signs that the RSV virus could adapt to resist the biological blockades created by preventive antibodies. Such signs of resistance would appear in mutations in new sequences of RSV.
"We really hope resistance does not become a problem for RSV prevention tools," Simonich said. "But the monitoring up to this point had been limited because there wasn't a comprehensive understanding of the impact of any viral changes that are observed and what they actually mean for the ability of these antibodies to still effectively target the virus."
Using a lab method called deep mutational scanning, Simonich and the study co-authors created a detailed library of possible RSV mutations that could indicate that the virus is changing in ways that could make preventive tools less effective.
Mapping possible escape mutations
The deep mutational scanning method was developed by Jesse Bloom, Ph.D., an evolutionary virologist and professor at Fred Hutch. Bloom is an investigator with Howard Hughes Medical Institute.
"In the past, scientists have mostly identified RSV antibody resistance mutations by passaging the actual virus in the lab in the presence of antibodies," Bloom explained.
"With new techniques like the one in this paper, we can systematically characterize the effects of mutations to the key viral protein outside the context of actual pathogenic virus. We can then combine these measurements with biophysical modeling of antibody escape and analysis of natural viral sequences to understand the extent to which evolution might impact the effectiveness of these important antibodies."
The team looked at 60,000 RSV sequences from public databases. The viral sequences came from people with RSV around the world and included subtypes RSV A and RSV B, which circulate together.
The researchers used deep mutational scanning to systematically measure the effect of thousands of possible mutations to the RSV fusion protein on antibody neutralization, then used that information to score the sequences for their level of resistance.
"Our findings show that it was rare to find resistance to the RSV antibodies currently used for prevention," Simonich said. "So that's encouraging for nirsevimab and clesirovimab because for both of these antibodies, it doesn't seem like there's any sort of sustained spread of resistance mutations."
Simonich estimated that less than 1% of RSV sequences contain resistance mutations.
Tracking resistance in real time
The researchers then integrated these comprehensive mutation libraries into Nextstrain, an open-access platform for monitoring pathogens. The team hopes the findings will help with ongoing real-time surveillance to monitor for resistance in RSV and examine whether any resistant RSV strains become more common over time.
"The progress we've made in preventing severe RSV disease, especially among infants, has been remarkable," Simonich said. "We hope these findings will help researchers continue to improve prevention tools and maintain their effectiveness over the long term."
This work was also guided by infectious disease expert Helen Y. Chu, MD, MPH, a co-author of the paper and a professor of medicine at the University of Washington School of Medicine.
Publication details
Jesse Bloom, Mutational constraints on RSV F and its neutralization by antibodies, Nature (2026). DOI: 10.1038/s41586-026-11030-4. www.nature.com/articles/s41586-026-11030-4
Journal information: Nature
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Infectious diseasesChildren's healthPediatricsCommon illnesses & PreventionPregnancy Provided by Fred Hutchinson Cancer Center Who's behind this story?
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