Related Experiment Video
Updated: Jun 28, 2025

Intravenous Injections in Neonatal Mice
Published on: November 11, 2014
Balanced on the Biggest Wave: Nirsevimab for Newborns
Insights
A new monoclonal antibody, nirsevimab, offers season-long protection against severe respiratory syncytial virus (RSV) disease in infants with a single dose. This advancement provides a more convenient and effective option for preventing infant hospitalizations due to RSV.
Area of Science:
- Pediatrics
- Immunology
- Virology
Background:
- Respiratory syncytial virus (RSV) is a major cause of infant hospitalizations in the US, affecting nearly all children by age two.
- Severe RSV disease can lead to long-term health issues like asthma and delayed speech development.
- Existing interventions like palivizumab are costly and require multiple doses, limiting their widespread use.
Purpose of the Study:
- To evaluate the efficacy and safety of nirsevimab, a novel monoclonal antibody, for preventing severe RSV disease in infants.
- To assess the potential of nirsevimab as a single-dose, season-long preventative measure against RSV hospitalization.
Main Methods:
- Conducted four landmark randomized controlled trials involving healthy and high-risk infants (preterm and term).
- Nirsevimab targets the RSV prefusion F protein's Ø antigenic site.
- Monitored efficacy in reducing medically attended RSV disease and hospitalizations, alongside safety profiles.
Main Results:
- Nirsevimab significantly reduced the risk of medically attended RSV disease (NNT 14-24) and hospitalization (NNT 33-63).
- A single dose provided protection for an entire 5-month RSV season.
- Observed rare side effects, primarily mild rash and injection site reactions.
Conclusions:
- Nirsevimab is an effective and safe single-dose preventative therapy for severe RSV disease in infants.
- Recent CDC recommendations support nirsevimab for infants younger than 8 months and high-risk infants aged 8-19 months.
- Equitable distribution and multidisciplinary collaboration are crucial for successful implementation of nirsevimab therapy.
Abstract:
Respiratory syncytial virus (RSV) is the leading cause of hospitalization in infancy in the United States. Nearly all infants are infected by 2 years of age, with bronchiolitis requiring hospitalization often occurring in previously healthy children and long-term consequences of severe disease including delayed speech development and asthma. Incomplete passage of maternal immunity and a high degree of genetic variability within the virus contribute to morbidity and have also prevented successful neonatal vaccine development. Monoclonal antibodies reduce the risk of hospitalization from severe RSV disease, with palivizumab protecting high-risk newborns with comorbidities including chronic lung disease and congenital heart disease. Unfortunately, palivizumab is costly and requires monthly administration of up to five doses during the RSV season for optimal protection.Rapid advances in the past two decades have facilitated the identification of antibodies with broad neutralizing activity and allowed manipulation of their genetic code to extend half-life. These advances have culminated with nirsevimab, a monoclonal antibody targeting the Ø antigenic site on the RSV prefusion protein and protecting infants from severe disease for an entire 5-month season with a single dose. Four landmark randomized controlled trials, the first published in July 2020, have documented the efficacy and safety of nirsevimab in healthy late-preterm and term infants, healthy preterm infants, and high-risk preterm infants and those with congenital heart disease. Nirsevimab reduces the risk of RSV disease requiring medical attention (number needed to treat [NNT] 14-24) and hospitalization (NNT 33-63) with rare mild rash and injection site reactions. Consequently, the Centers for Disease Control and Prevention has recently recommended nirsevimab for all infants younger than 8 months of age entering or born during the RSV season and high-risk infants 8-19 months of age entering their second season. Implementing this novel therapy in this large population will require close multidisciplinary collaboration. Equitable distribution through minimizing barriers and maximizing uptake must be prioritized.
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