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Maternal vaccination: shaping the neonatal response to pertussis
Maiya Callender1, Eric T Harvill1
1Department of Infectious Diseases, College of Veterinary Medicine, University of Georgia, Athens, GA, United States.
Insights
Maternal vaccines like Tdap protect newborns from pertussis. While antibodies transfer, immune cells may also play a role, but can impact infant vaccine responses, highlighting knowledge gaps.
Area of Science:
- Immunology
- Maternal and Child Health
- Vaccinology
Background:
- Antepartum maternal vaccination protects newborns too young for their own vaccines.
- Recommended vaccines during pregnancy include flu and Tdap (tetanus, diphtheria, pertussis).
- Understanding maternal-fetal immunity transfer is crucial for optimizing vaccine efficacy.
Purpose of the Study:
- To explore mechanisms of protection transfer from maternal Tdap vaccination to offspring.
- To investigate how maternal immunity impacts newborn responses to pertussis.
- To identify knowledge gaps in maternal vaccination strategies.
Main Methods:
- Review of existing literature on maternal vaccination and pertussis.
- Analysis of antibody and immune cell transfer from mother to fetus/newborn.
- Examination of the impact of transferred immunity on neonatal immune development and response.
Main Results:
- Tdap vaccines induce antibodies transferred transplacentally and via milk.
- Antibodies alone have limited impact on pertussis disease and transmission.
- Maternal immune cells are transferred and may influence neonatal immunity, potentially blunting responses to infant vaccination.
Conclusions:
- Maternal vaccination offers protection but mechanisms are complex.
- Both antibodies and immune cells contribute to offspring immunity.
- Further research is needed to address knowledge gaps for effective application of maternal pertussis vaccination.
Abstract:
Antepartum maternal vaccination can protect highly sensitive newborns before they are old enough to receive their own vaccines. Two vaccines are currently recommended during pregnancy: the flu vaccine and the Tdap vaccine against tetanus, diphtheria, and pertussis. Although there is strong evidence that maternal vaccination works to protect the offspring, limitations in the understanding of vaccines and of maternal transfer of immunity compound to obscure our understanding of how they work. Here we focus on the example of pertussis to explore the possible mechanisms involved in the transfer of protection to offspring and how these may impact the newborn's response to future exposure to pertussis. For example, Tdap vaccines induce pathogen specific antibodies, and those antibodies are known to be transferred from mother to the fetus in utero and to the newborn via milk. But antibodies alone have modest impact on pertussis disease, and even less effect on colonization/transmission. Maternal immune cells can also be transferred to offspring and may play a direct role in protection from disease and/or influence the developing neonatal immune system. However, some of the transferred immunity may also blunt the offspring's response to subsequent vaccination. In this review we will summarize the protection conferred to offspring by maternal vaccination against pertussis and the likely mechanisms by which protection is transferred, identifying the many knowledge gaps that limit our most effective application of this approach.
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