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Updated: Aug 11, 2026

Capsular Serotyping of Streptococcus pneumoniae Using the Quellung Reaction
Published on: February 24, 2014
Multivalent group A streptococcal vaccine elicits bactericidal antibodies against variant M subtypes
James B Dale1, Thomas Penfound, Edna Y Chiang
1Department of Veterans Affairs, The University of Health Science Center, Memphis, TN 38104, USA. james.dale@med.va.gov
Abstract:
Group A streptococci cause a wide spectrum of clinical illness. One of several strategies for vaccine prevention of these infections is based on the type-specific M protein epitopes. A multivalent M protein-based vaccine containing type-specific determinants from 26 different M serotypes is now in clinical trials. Recent epidemiologic studies have shown that, within some serotypes, the amino-terminal M protein sequence may show natural variation, giving rise to subtypes. This raises the possibility that vaccine-induced antibodies against the parent type may not be as effective in promoting bactericidal killing of variant subtypes. In the present study we used rabbit antisera against the 26-valent M protein-based vaccine in bactericidal tests against M1, M3, and M5 streptococci, which were represented by multiple subtypes. We show that the vaccine antibodies effectively promoted in vitro bactericidal activity despite the fact that the M proteins contained naturally occurring variant sequences in the regions corresponding to the vaccine sequence. Our results show that the variant M proteins generally do not result in significant differences in opsonization promoted by rabbit antisera raised against the 26-valent vaccine, suggesting that a multivalent M protein vaccine may not permit variant subtypes of group A streptococci to escape in a highly immunized population.
Insights
A new multivalent vaccine for Group A Streptococcus (GAS) shows effectiveness against M protein variants. Antibodies generated by the vaccine successfully promoted bacterial killing, suggesting broad protection against GAS subtypes.
Area of Science:
- Microbiology
- Immunology
- Vaccinology
Background:
- Group A streptococci (GAS) cause diverse illnesses.
- M protein-based vaccines are a key prevention strategy.
- Naturally occurring M protein variants may evade vaccine-induced immunity.
Purpose of the Study:
- To evaluate the efficacy of a multivalent M protein vaccine against naturally occurring M protein variants of GAS.
- To determine if vaccine-induced antibodies can effectively promote bactericidal activity against GAS subtypes.
Main Methods:
- Rabbit antisera against a 26-valent M protein vaccine were generated.
- Bactericidal tests were performed using M1, M3, and M5 streptococcal strains with multiple subtypes.
- Opsonization levels were assessed for variant M proteins.
Main Results:
- Vaccine antibodies effectively promoted in vitro bactericidal activity against GAS subtypes.
- Naturally occurring variant sequences in M proteins did not significantly impair antibody effectiveness.
- Variant M proteins generally did not cause significant differences in opsonization.
Conclusions:
- A multivalent M protein-based vaccine demonstrates broad efficacy against GAS subtypes.
- The vaccine may prevent immune escape by variant GAS strains in a vaccinated population.
- This suggests a promising strategy for preventing GAS infections.
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