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Published on: February 24, 2023
BpOmpW Antigen Stimulates the Necessary Protective T-Cell Responses Against Melioidosis
Julen Tomás-Cortázar1,2, Lorenzo Bossi3, Conor Quinn1,2
1Conway Institute of Biomolecular and Biomedical Science, University College Dublin, Dublin, Ireland.
Abstract:
Melioidosis is a potentially fatal bacterial disease caused by Burkholderia pseudomallei and is estimated to cause 89,000 deaths per year in endemic areas of Southeast Asia and Northern Australia. People with diabetes mellitus are most at risk of melioidosis, with a 12-fold increased susceptibility for severe disease. Interferon gamma (IFN-γ) responses from CD4 and CD8 T cells, but also from natural killer (NK) and natural killer T (NKT) cells, are necessary to eliminate the pathogen. We previously reported that immunization with B. pseudomallei OmpW (BpOmpW antigen) protected mice from lethal B. pseudomallei challenge for up to 81 days. Elucidating the immune correlates of protection of the protective BpOmpW vaccine is an essential step prior to clinical trials. Thus, we immunized either non-insulin-resistant C57BL/6J mice or an insulin-resistant C57BL/6J mouse model of type 2 diabetes (T2D) with a single dose of BpOmpW. BpOmpW induced strong antibody responses, stimulated effector CD4+ and CD8+ T cells and CD4+ CD25+ Foxp3+ regulatory T cells, and produced higher IFN-γ responses in CD4+, CD8+, NK, and NKT cells in non-insulin-resistant mice. The T-cell responses of insulin-resistant mice to BpOmpW were comparable to those of non-insulin-resistant mice. In addition, as a precursor to its evaluation in human studies, humanized HLA-DR and HLA-DQ (human leukocyte antigen DR and DQ isotypes, respectively) transgenic mice elicited IFN-γ recall responses in an enzyme-linked immune absorbent spot (ELISpot)-based study. Moreover, human donor peripheral blood mononuclear cells (PBMCs) exposed to BpOmpW for 7 days showed T-cell proliferation. Finally, plasma from melioidosis survivors with diabetes recognized our BpOmpW vaccine antigen. Overall, the range of approaches used strongly indicated that BpOmpW elicits the necessary immune responses to combat melioidosis and bring this vaccine closer to clinical trials.
Insights
A new vaccine using Burkholderia pseudomallei OmpW (BpOmpW) shows promise for preventing melioidosis. This BpOmpW antigen effectively stimulates immune responses in both diabetic and non-diabetic models, moving the vaccine closer to human trials.
Area of Science:
- Immunology
- Vaccinology
- Infectious Diseases
Background:
- Melioidosis, caused by Burkholderia pseudomallei, is a fatal disease with high mortality in Southeast Asia and Australia.
- Individuals with diabetes mellitus face a significantly higher risk of severe melioidosis.
- Effective T-cell and natural killer cell-mediated interferon gamma (IFN-γ) responses are crucial for pathogen clearance.
Purpose of the Study:
- To evaluate the immune responses elicited by the B. pseudomallei OmpW (BpOmpW) antigen in preclinical models.
- To assess the potential of BpOmpW as a vaccine candidate for melioidosis, particularly in individuals with diabetes.
- To identify immune correlates of protection for the BpOmpW vaccine.
Main Methods:
- Immunization of non-insulin-resistant and insulin-resistant (type 2 diabetes model) C57BL/6J mice with BpOmpW.
- Analysis of antibody and T-cell responses, including IFN-γ production by CD4+, CD8+, NK, and NKT cells.
- Evaluation in humanized HLA-DR/DQ transgenic mice and assessment of human peripheral blood mononuclear cell (PBMC) proliferation.
- Testing recognition of BpOmpW by plasma from melioidosis survivors with diabetes.
Main Results:
- BpOmpW induced robust antibody and T-cell responses, including significant IFN-γ production in various immune cells in non-diabetic mice.
- Insulin-resistant mice exhibited comparable T-cell responses to BpOmpW as non-insulin-resistant mice.
- Humanized mice showed IFN-γ recall responses, and human PBMCs demonstrated T-cell proliferation upon BpOmpW exposure.
- Plasma from diabetic melioidosis survivors recognized the BpOmpW antigen.
Conclusions:
- The BpOmpW antigen elicits broad and potent immune responses necessary for combating melioidosis.
- The vaccine candidate demonstrates efficacy in preclinical models, including those mimicking diabetes.
- These findings support the advancement of the BpOmpW vaccine towards human clinical trials.
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