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March 3, 2026Vaccine0 citationsOpen Access

Neonatal mice immune response to COVID-19 mRNA vaccine

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LLLeda E. Lotspeich-ColeCenter for Construction Research and TrainingMJMukesh Kumar JhaCenter for Construction Research and TrainingSPSwetha ParvathaneniCenter for Construction Research and Training

Key Points

  • Higher levels of IgG antibodies were induced in neonatal mice with the mRNA vaccine compared to the recombinant protein vaccine.
  • The mRNA encoded receptor binding domain vaccine showed more effective inhibition of ACE2 binding.
  • Both vaccines were administered twice three weeks apart, generating detectable anti-RBD antibodies.
  • The findings support the potential of mRNA vaccines for improving immune responses in younger populations.

Abstract

A vaccine based on an mRNA platform was first licensed for human use during the COVID-19 pandemic. However, data on the immunogenicity of SARS-CoV-2 mRNA vaccines in neonates is insufficient and the vaccines were only authorized for those over six months of age. Here, we compared the antibody responses induced by both recombinant receptor binding domain (rRBD) of SARS-CoV-2 spike protein (RBD) and mRNA encoded RBD (RBD-mRNA-LNP) forms in neonatal mice. When administered twice three weeks apart, both forms induced detectable anti-RBD antibodies. However, levels of IgG antibodies against RBD were significantly higher with more potent inhibition of RBD binding to ACE2 in neonatal mice immunized with RBD-mRNA-LNP vaccine compared to those immunized with rRBD vaccine adjuvanted with AddaVax™, a squalene-based adjuvant. Thus, the mRNA vaccine platform elicits higher levels of antibodies with improved functional capability in neonatal mice compared to the recombinant protein platform.

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Cite This Study

Lotspeich-Cole et al. (2026) studied this question.

synapsesocial.com/papers/69a75d0dc6e9836116a2678dhttps://doi.org/10.1016/j.vaccine.2026.128271
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