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Novel multi-component vaccine approaches for Burkholderia pseudomallei
L Morici1, A G Torres2, R W Titball3
1Department of Microbiology and Immunology, Tulane University School of Medicine, New Orleans, LA, USA.
Abstract:
Burkholderia pseudomallei is the causative agent of melioidosis. Historically believed to be a relatively rare human disease in tropical countries, a recent study estimated that, worldwide, there are approximately 165 000 human melioidosis cases per year, more than half of whom die. The bacterium is inherently resistant to many antibiotics and treatment of the disease is often protracted and ineffective. There is no licensed vaccine against melioidosis, but a vaccine is predicted to be of value if used in high-risk populations. There has been progress over the last decade in the pursuit of an effective vaccine against melioidosis. Animal models of disease including mouse and non-human primates have been developed, and these models show that antibody responses play a key role in protection against melioidosis. Surprisingly, although B. pseudomallei is an intracellular pathogen there is limited evidence that CD8+ T cells play a role in protection. It is evident that a multi-component vaccine, incorporating one or more protective antigens, will probably be essential for protection because of the pathogen's sophisticated virulence mechanisms as well as strain heterogeneity. Multi-component vaccines in development include glycoconjugates, multivalent subunit preparations, outer membrane vesicles and other nano/microparticle platforms and live-attenuated or inactivated bacteria. A consistent finding with vaccine candidates tested in mice is the ability to induce sterilizing immunity at low challenge doses and extended time to death at higher challenge doses. Further research to identify ways of eliciting more potent immune responses might provide a path for licensing an effective vaccine.
Insights
Developing an effective vaccine for melioidosis, a deadly disease caused by Burkholderia pseudomallei, is crucial. Research shows multi-component vaccines and antibody responses are key to protection against this antibiotic-resistant bacterium.
Area of Science:
- Infectious Diseases
- Vaccinology
- Microbiology
Background:
- Melioidosis, caused by Burkholderia pseudomallei, affects ~165,000 globally, with high mortality.
- The bacterium exhibits intrinsic antibiotic resistance, complicating treatment and necessitating vaccine development.
- No licensed vaccine exists, but one is vital for high-risk populations.
Purpose of the Study:
- To review progress in developing an effective melioidosis vaccine.
- To highlight the role of antibody responses and the potential need for multi-component vaccines.
- To discuss current vaccine candidates and future research directions.
Main Methods:
- Review of recent research on melioidosis vaccine development.
- Analysis of animal models (mice, non-human primates) to assess immune responses.
- Evaluation of different vaccine platforms, including glycoconjugates, subunit vaccines, and nanoparticles.
Main Results:
- Antibody responses are critical for protection against B. pseudomallei.
- Multi-component vaccines are likely necessary due to pathogen complexity and heterogeneity.
- Vaccine candidates tested in mice show promise in inducing immunity.
Conclusions:
- Further research is needed to elicit more potent immune responses for vaccine licensing.
- Developing a multi-component vaccine is essential for effective melioidosis prevention.
- Advances in vaccine platforms offer promising avenues for melioidosis control.
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