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Safety and Pharmacokinetics of Nirsevimab in Immunocompromised Children
Joseph Domachowske1, Ulrika Wählby Hamrén2, Irfana Banu3
1State University of New York Upstate Medical University Syracuse, New York.
Insights
Nirsevimab, an extended half-life monoclonal antibody, demonstrated good safety and supportive efficacy for preventing respiratory syncytial virus (RSV) lower respiratory tract infections in immunocompromised children. Further research is needed to understand its impact in children with increased nirsevimab clearance.
Area of Science:
- Pediatric Infectious Diseases
- Immunology
- Pharmacology
Background:
- Immunocompromised children face higher risks of severe respiratory syncytial virus (RSV) lower respiratory tract infections (LRTIs).
- Nirsevimab is an extended half-life monoclonal antibody designed to protect against RSV.
Purpose of the Study:
- To evaluate the safety and pharmacokinetics of nirsevimab in immunocompromised children aged 24 months or younger.
- To assess the potential of nirsevimab in preventing RSV LRTI in this vulnerable population.
Main Methods:
- An open-label, Phase II MUSIC trial administered single intramuscular doses of nirsevimab to 100 immunocompromised children.
- Safety, antidrug antibodies, and pharmacokinetics were monitored up to day 361.
- Participants had various immunocompromising conditions, including primary immunodeficiency, post-transplantation, HIV, and those on immunosuppressive therapies.
Main Results:
- Nirsevimab was well tolerated, with only minor treatment-related adverse events and no serious safety concerns.
- Three deaths occurred, none attributed to the treatment.
- Serum concentrations of nirsevimab at day 151 were comparable to those effective in healthy infants, and no medically attended RSV LRTIs were observed through day 151.
- Eleven children developed antidrug antibodies, with minimal impact on pharmacokinetics or safety. Fourteen children showed increased nirsevimab clearance, potentially due to protein-losing conditions.
Conclusions:
- Nirsevimab is a safe and well-tolerated option for immunocompromised children aged ≤24 months, with serum concentrations supporting efficacy against RSV LRTI.
- The impact of increased nirsevimab clearance in a subset of patients on treatment efficacy requires further investigation.
Background And Objectives:
Immunocompromised children may have increased risk for severe respiratory syncytial virus (RSV) lower respiratory tract infection (LRTI), potentially leading to prolonged hospitalization, intensive care, and death. The open-label phase II MUSIC trial evaluated the safety and pharmacokinetics of nirsevimab, an extended half-life monoclonal antibody against RSV, in immunocompromised children aged ≤24 months.
Methods:
Participants received a single intramuscular injection of nirsevimab (first RSV season: 50 mg if <5 kg/100 mg if ≥5 kg; second season: 200 mg). Safety, antidrug antibodies, and pharmacokinetics were evaluated to day 361.
Results:
Participants (n = 100) had ≥1 immunocompromising conditions: primary immunodeficiency (n = 33), previous transplantation (n = 16), HIV infection (n = 8) or treatment with high-dose systemic corticosteroids (n = 29), immunosuppressive chemotherapy (n = 20), or other immunosuppressive therapies (n = 15). Six children experienced eight treatment-related adverse events (none categorized as serious). Three deaths occurred, all were unrelated to treatment. Eleven children, developed antidrug antibodies, with minimal effects on pharmacokinetics and no apparent impact on safety. Nirsevimab serum concentrations at day 151 were similar to those effective in preventing medically attended RSV LRTI in healthy infants. Fourteen children had increased nirsevimab clearance. No protocol-defined medically attended RSV LRTIs occured through day 151.
Conclusions:
Among immunocompromised children aged ≤24 months, nirsevimab was well tolerated with no safety concerns and serum concentrations were supportive of efficacy. A subset of children with increased nirsevimab clearance, had conditions potentially associated with protein loss; however, the impact on efficacy is unknown.
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