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Published on: September 23, 2022
Associations of adaptive immune cell subsets with measles, mumps, and Rubella-Specific immune response outcomes
Lin Wang1, Iana H Haralambieva1, Inna G Ovsyannikova1
1Vaccine Research Group, Division of General Internal Medicine, Mayo Clinic, Rochester, MN, USA.
Abstract:
The measles-mumps-rubella (MMR) vaccine has been widely used in the US, but measles and mumps outbreaks remain a public health issue in the US and elsewhere, even among individuals immunized with 2 doses of the vaccine. Immune correlates of vaccine-elicited protection against disease are typically assessed with serum antibody assays, but in some cases, these correlates fail to predict immunity, with the complexity and heterogeneity of the immune response. We used multicolor flow cytometry to evaluate changes in the frequency of peripheral T and B cell subsets in 82 study participants after receipt of a third dose of the M-M-RII vaccine (Merck & Co, Inc). We assessed correlations between flow cytometry variables and measles virus (MV), mumps virus (MuV), or rubella virus (RV)-specific immune response outcomes. Following a third vaccine dose, major changes were observed in the T-cell compartment. CD4+ T cell subsets were significantly increased from baseline to day 28, whereas CD8+ T cell subsets were predominantly decreased. Changes in regulatory T cells (Tregs) correlated with RV- and MV-specific immune outcomes and with high- and low-RV antibody responder groups, implicating the importance of Tregs in regulating MMR vaccine-induced immune responses. This information may help define additional correlates of protection and aid in the design of improved vaccines.
Insights
A third measles-mumps-rubella (MMR) vaccine dose boosts T cell responses, particularly regulatory T cells (Tregs). These Treg changes correlate with measles and rubella virus immunity, suggesting their role in vaccine effectiveness.
Area of Science:
- Immunology
- Vaccinology
- Public Health
Background:
- Measles-mumps-rubella (MMR) vaccine effectiveness is challenged by ongoing outbreaks, even in vaccinated individuals.
- Traditional antibody assays sometimes fail to predict vaccine-induced immunity due to complex immune responses.
Purpose of the Study:
- To investigate the impact of a third MMR vaccine dose on peripheral T and B cell subsets.
- To identify correlations between immune cell changes and measles virus (MV), mumps virus (MuV), and rubella virus (RV)-specific immune responses.
Main Methods:
- Utilized multicolor flow cytometry to analyze T and B cell subsets in 82 participants post-third MMR vaccine dose.
- Assessed correlations between flow cytometry data and MV-, MuV-, and RV-specific immune outcomes.
Main Results:
- A third MMR vaccine dose significantly altered the T-cell compartment, increasing CD4+ T cell subsets and decreasing CD8+ T cell subsets.
- Changes in regulatory T cells (Tregs) correlated with RV- and MV-specific immune responses and antibody responder status.
Conclusions:
- Regulatory T cells play a crucial role in modulating MMR vaccine-induced immunity.
- Understanding Treg dynamics can help define new correlates of protection and improve vaccine design for measles, mumps, and rubella.
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