Melioidosis, an infectious disease caused by Burkholderia pseudomallei (Bp), is difficult to treat due to intrinsic antibiotic resistance, latency with subsequent recrudescence and a diverse non-specific symptomatology. A vaccine is needed to effectively control this disease burden around the globe. Here we tested the efficacy of a novel Bp vaccine containing hemolysin-coregulated protein (Hcp1), capsular polysaccharide (CPS)-CRM197 conjugate, and CpG using the Atomic Layering Thermostable Antigen and Adjuvant (ALTA®) platform.
C57BL/6 mice were vaccinated and the protective efficacy as well as immunological profiles were evaluated pre- and post-aerosol challenge with B. pseudomallei K96243 strain.
Each tested dose of Bp ALTA® formulation demonstrated protective efficacy (20-50%) over a non-vaccinated control. Mechanistically, the Bp ALTA® formulations increased Hcp1-directed IFN-gamma recall in splenocytes, and produced robust antibody response against the principal dominant antigen, CPS. High levels of anti-CPS antibodies were associated with significant decrease in bacterial burden in the lung.
The ALTA® platform, which has previously been shown to provide antigen thermostability, was utilized in this study for Bp vaccination achieving protective efficacy from a single-shot administration. Studies are ongoing to optimize the immunogenic potential and protective capacity of these novel formulations.
DTRA-JSTO
Vaccines and Immunotherapy (VAC)
Michael L. Davies, Taloria K. Wheeler, Sergei S. Biryukov et al.· Journal of Immunology· 0 citations
Melioidosis, caused by Burkholderia pseudomallei, is an emerging disease in the United States and was declared endemic to the Gulf Coast region in 2022. Melioidosis has been sporadically reported in the American continents, the Caribbean, and more recently in Africa. We conducted lethal dose analyses in BALB/c and C57BL/6 mice exposed to small particle aerosols of B. pseudomallei strains from the Western Hemisphere and Africa. Those isolates exhibit a variety of virulence patterns, including rapidly-lethal disease and delayed onset of fatal disease. We found that the isolates we tested grew similarly in culture but displayed major differences in biofilm formation. Our data contribute to the growing knowledge of geographically distinct B. pseudomallei isolates and aid in ensuring that medical countermeasures in development are effective against a diverse collection of bacterial strains.
C. Klimko, J. Meinig, K. Mlynek et al.· Emerging Infectious Diseases· 0 citations
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