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Author Spotlight: A Pseudotype Virus System for Assessing Omicron Subvariants and Neutralizing Antibodies in SARS-CoV-2 Research
Published on: September 8, 2023
Increased Potency and Breadth of SARS-CoV-2 Neutralizing Antibodies After a Third mRNA Vaccine Dose
Abstract:
The omicron variant of SARS-CoV-2 infected very large numbers of SARS-CoV-2 vaccinated and convalescent individuals 1-3 . The penetrance of this variant in the antigen experienced human population can be explained in part by the relatively low levels of plasma neutralizing activity against Omicron in people who were infected or vaccinated with the original Wuhan-Hu-1 strain 4-7 . The 3 rd mRNA vaccine dose produces an initial increase in circulating anti-Omicron neutralizing antibodies, but titers remain 10-20-fold lower than against Wuhan-Hu-1 and are, in many cases, insufficient to prevent infection 7 . Despite the reduced protection from infection, individuals that received 3 doses of an mRNA vaccine were highly protected from the more serious consequences of infection 8 . Here we examine the memory B cell repertoire in a longitudinal cohort of individuals receiving 3 mRNA vaccine doses 9,10 . We find that the 3 rd dose is accompanied by an increase in, and evolution of, anti-receptor binding domain specific memory B cells. The increase is due to expansion of memory B cell clones that were present after the 2 nd vaccine dose as well as the emergence of new clones. The antibodies encoded by these cells showed significantly increased potency and breadth when compared to antibodies obtained after the 2 nd vaccine dose. Notably, the increase in potency was especially evident among newly developing clones of memory cells that differed from the persisting clones in targeting more conserved regions of the RBD. Overall, more than 50% of the analyzed neutralizing antibodies in the memory compartment obtained from individuals receiving a 3 rd mRNA vaccine dose neutralized Omicron. Thus, individuals receiving 3 doses of an mRNA vaccine encoding Wuhan-Hu-1, have a diverse memory B cell repertoire that can respond rapidly and produce antibodies capable of clearing even diversified variants such as Omicron. These data help explain why a 3 rd dose of an mRNA vaccine that was not specifically designed to protect against variants is effective against variant-induced serious disease.
Insights
A third mRNA vaccine dose boosts memory B cells, enhancing antibody potency and breadth against SARS-CoV-2 variants like Omicron. This immune response explains protection against severe disease despite reduced infection prevention.
Area of Science:
- Immunology
- Virology
- Vaccinology
Background:
- The Omicron variant of SARS-CoV-2 (Severe Acute Respiratory Syndrome-Coronavirus-2) demonstrated significant immune evasion in vaccinated and convalescent individuals due to low neutralizing antibody titers against original strains.
- While a third mRNA vaccine dose initially increases neutralizing antibodies, levels remain suboptimal against Omicron, though protection against severe disease is maintained.
Approach:
- This study longitudinally examined the memory B cell repertoire in individuals receiving three mRNA vaccine doses.
- Analysis focused on anti-receptor binding domain (RBD) specific memory B cells and the characteristics of antibodies produced by these cells.
Key Points:
- The third mRNA vaccine dose stimulated an increase and evolution of anti-RBD memory B cells, including expansion of pre-existing clones and emergence of new ones.
- Antibodies from these boosted memory B cells exhibited enhanced potency and breadth compared to those after two doses.
- Newly emerging memory B cell clones targeted more conserved RBD regions, contributing to increased antibody potency.
Conclusions:
- Individuals receiving three mRNA vaccine doses possess a robust memory B cell repertoire capable of rapidly generating antibodies that neutralize SARS-CoV-2 variants, including Omicron.
- This enhanced immune response, particularly the evolution of memory B cells targeting conserved epitopes, explains the high efficacy of the third vaccine dose in preventing severe disease from variants.
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