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Updated: Oct 2, 2025

Evaluation of Host-Pathogen Responses and Vaccine Efficacy in Mice
Published on: February 22, 2019
Age and Primary Vaccination Background Influence the Plasma Cell Response to Pertussis Booster Vaccination
Annieck M Diks1, Pauline Versteegen2, Cristina Teodosio1
1Department of Immunology, Leiden University Medical Center, Albinusdreef 2, 2333 ZA Leiden, The Netherlands.
Insights
Pertussis booster vaccines induce plasma cell expansion in all ages. Whole-cell vaccine priming enhances this response, suggesting plasma cells as early immune markers.
Area of Science:
- Immunology
- Vaccinology
Background:
- Pertussis (whooping cough) incidence and mortality have risen, potentially linked to shifts in pertussis vaccines.
- Understanding B cell dynamics post-vaccination is crucial for optimizing vaccine strategies.
Purpose of the Study:
- To investigate B cell changes after acellular pertussis booster vaccination across different age groups and vaccination histories.
- To identify early cellular markers of vaccine-induced immune responses.
Main Methods:
- High-dimensional flow cytometry was used to analyze B cell populations.
- Longitudinal analysis was performed within and between four age cohorts.
- Correlations were drawn between B cell changes, vaccine-specific cells, and serum immunoglobulin levels.
Main Results:
- Plasma cell expansion and maturation were the most significant cellular changes observed 7 days post-vaccination across all age groups.
- Responses were more pronounced in individuals previously primed with whole-cell pertussis vaccines compared to acellular vaccines.
- Expansion of IgG1+ and IgA1+ plasma cells correlated with specific antibody levels (IgG/IgA) against pertussis antigens.
Conclusions:
- Plasma cells serve as a potential early indicator of vaccine-induced immune responses.
- Differences in immune responses are influenced by age and prior vaccination history, particularly the type of pertussis vaccine received.
Abstract:
Pertussis is a vaccine-preventable disease caused by the bacterium Bordetella pertussis. Over the past years, the incidence and mortality of pertussis increased significantly. A possible cause is the switch from whole-cell to acellular pertussis vaccines, although other factors may also contribute. Here, we applied high-dimensional flow cytometry to investigate changes in B cells in individuals of different ages and distinct priming backgrounds upon administration of an acellular pertussis booster vaccine. Participants were divided over four age cohorts. We compared longitudinal kinetics within each cohort and between the different cohorts. Changes in the B-cell compartment were correlated to numbers of vaccine-specific B- and plasma cells and serum Ig levels. Expansion and maturation of plasma cells 7 days postvaccination was the most prominent cellular change in all age groups and was most pronounced for more mature IgG1+ plasma cells. Plasma cell responses were stronger in individuals primed with whole-cell vaccine than in individuals primed with acellular vaccine. Moreover, IgG1+ and IgA1+ plasma cell expansion correlated with FHA-, Prn-, or PT- specific serum IgG or IgA levels. Our study indicates plasma cells as a potential early cellular marker of an immune response and contributes to understanding differences in immune responses between age groups and primary vaccination backgrounds.
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