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March 10, 2026Vaccine3 citationsOpen Access

Maternal immunization and early-life immunity: Mechanisms shaping neonatal protection

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VSVincent Portet SullaSSStanley SoussanEBEtienne Bizot

Key Points

  • This research examines how maternal immunization affects early-life immunity and neonatal health outcomes.
  • Review of maternal antibody transfer mechanisms
  • Analysis of neonatal Fc receptor (FcRn) and Fc gamma receptor (Fcγ) roles
  • Evaluation of maternal vaccination effects on infant immunization responses
  • Assessment of immune development from breast milk and microchimerism
  • Maternal immunization significantly increases pathogen-specific IgG transfer to infants.
  • FcRn is crucial for placental IgG transport, with FcγRs possibly influencing IgG selection.
  • Transmitted maternal antibodies can temporarily reduce the effectiveness of infant vaccines.
  • Breast milk contributes to neonatal immune system development through cellular components and mediators.

Abstract

Neonatal infections remain a leading cause of morbidity and mortality worldwide, reflecting the distinctive immunological state of early life, which prioritizes tolerance and regulatory/T helper 2 (Th2)-skewed responses over robust effector immunity. Protection during this vulnerable period relies largely on maternal immunity conveyed across the placenta and through breast milk. Transplacental IgG transport is mediated primarily by the neonatal Fc receptor (FcRn) and may be influenced by placental Fc gamma (Fcγ) receptors, IgG subclass distribution and Fc features, including glycosylation. Maternal, placental and fetal factors collectively determine the efficiency and functional quality of this transfer. Maternal vaccination increases the pool of pathogen-specific IgG available for fetal transfer, protecting mothers and conferring passive immunity to infants during the first months of life. Beyond neutralization, transferred antibodies can mediate Fc-dependent effector functions that support early protection. Maternal immunity also includes cellular components, such as maternal microchimerism and the transfer of immune cells and mediators via breast milk, which may shape neonatal immune development and vaccine responsiveness. Despite its benefits, maternal immunization may transiently dampen infant vaccine responses through mechanisms including antigen masking and inhibitory Fc-mediated signalling (the blunting effect). Current evidence indicates that these transient effects are outweighed by the protection achieved in early infancy. Future priorities include defining the long-term immunological imprint of maternal immunity, optimizing maternal vaccination timing to maximize IgG transfer, and refining infant immunization schedules to minimize interference while maintaining protection. Finally, expanding maternal immunization globally is a scalable strategy to reduce the burden of early-life infections. • Maternal immunization protects infants during the early-life immunity gap. • FcRn mediates placental IgG transport; FcγRs may modulate selectivity. • IgG transfer varies with maternal, placental and fetal factors. • Microchimerism and breast milk cells may shape neonatal immune maturation. • Maternal antibodies can transiently blunt infant vaccine immunogenicity.

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Cite This Study

Sulla et al. (2026) studied this question.

synapsesocial.com/papers/69af952b70916d39fea4c699https://doi.org/10.1016/j.vaccine.2026.128423
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