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Inducing Meningococcal Meningitis Serogroup C in Mice via Intracisternal Delivery
Published on: November 5, 2019
Antiidiotypic DNA vaccination induces serum bactericidal activity and protection against group B meningococci
Concetta Beninati1, Angelina Midiri, Giuseppe Mancuso
1Dipartimento di Patologia e Microbiologia Sperimentale, Università degli Studi di Messina, I-98125 Messina, Italy.
Abstract:
No vaccine is available for preventing infections by serogroup B Neisseria meningitidis (MenB), which accounts for a major portion of meningococcal cases in developed countries, because of the poor immunogenicity of the capsular polysaccharide (CP) even after protein conjugation. We have previously induced anticapsular antibodies by immunization with a single chain variable fragment (scFv), which mimics a protective CP epitope. This surrogate antigen, however, was ineffective at inducing serum bactericidal activity, an accepted marker of protection in humans. Serum bactericidal activity was consistently achieved by immunizing mice with the scFv-encoding gene. Immunization with vectors without a secretory signal sequence before the scFv resulted in markedly higher bactericidal activity relative to those with such a sequence. The induced antibodies were capsule specific, as shown by complete inhibition of bactericidal activity by purified MenB CP and by resistance to killing of MenA or MenC. Moreover, these antibodies were predominantly of the IgG2a isotype, reflecting a T helper type 1 response. Administration of sera from scFv gene-vaccinated animals protected infant rats against MenB bacteremia. These data illustrate the potential of vaccination with genes encoding capsular mimics in providing protection against MenB and other encapsulated bacteria.
Insights
Developing a new vaccine strategy against serogroup B meningococcal disease (MenB) is crucial. Gene immunization with a capsular mimic (scFv) successfully induced protective antibodies and serum bactericidal activity against MenB infections.
Area of Science:
- Immunology
- Vaccinology
- Microbiology
Background:
- Serogroup B Neisseria meningitidis (MenB) infections pose a significant public health challenge in developed countries.
- Current vaccines are ineffective against MenB due to the poor immunogenicity of its capsular polysaccharide (CP).
Purpose of the Study:
- To evaluate the potential of gene immunization using a single chain variable fragment (scFv) that mimics the MenB CP epitope.
- To assess the ability of this approach to induce protective immunity, specifically serum bactericidal activity.
Main Methods:
- Mice were immunized with genes encoding an scFv that mimics the MenB CP.
- Different vector designs, with and without secretory signal sequences, were tested.
- Serum bactericidal activity, antibody isotype, and protective efficacy in infant rats were assessed.
Main Results:
- Gene immunization with the scFv consistently induced significant serum bactericidal activity against MenB.
- Vectors lacking a secretory signal sequence yielded higher bactericidal activity.
- Induced antibodies were specific to MenB CP and conferred protection in a neonatal rat sepsis model.
Conclusions:
- Gene immunization with capsular mimicry antigens represents a promising strategy for developing a MenB vaccine.
- This approach may be applicable to other encapsulated bacterial pathogens.
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