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Whole-animal Imaging and Flow Cytometric Techniques for Analysis of Antigen-specific CD8+ T Cell Responses after Nanoparticle Vaccination
Published on: April 29, 2015
A comparison of antigen-specific T cell responses induced by six novel tuberculosis vaccine candidates
Miguel J Rodo1,2, Virginie Rozot1, Elisa Nemes1
1South African Tuberculosis Vaccine Initiative, Institute of Infectious Disease and Molecular Medicine, Division of Immunology, Department of Pathology, University of Cape Town, Cape Town, Western Cape, South Africa.
Abstract:
Eradication of tuberculosis (TB), the world's leading cause of death due to infectious disease, requires a highly efficacious TB vaccine. Many TB vaccine candidates are in pre-clinical and clinical development but only a few can be advanced to large-scale efficacy trials due to limited global resources. We aimed to perform a statistically rigorous comparison of the antigen-specific T cell responses induced by six novel TB vaccine candidates and the only licensed TB vaccine, Bacillus Calmette-Guérin (BCG). We propose that the antigen-specific immune response induced by such vaccines provides an objective, data-driven basis for prioritisation of vaccine candidates for efficacy testing. We analyzed frequencies of antigen-specific CD4 and CD8 T cells expressing IFNγ, IL-2, TNF and/or IL-17 from adolescents or adults, with or without Mycobacterium tuberculosis (M.tb) infection, who received MVA85A, AERAS-402, H1:IC31, H56:IC31, M72/AS01E, ID93+GLA-SE or BCG. Two key response characteristics were analyzed, namely response magnitude and cytokine co-expression profile of the memory T cell response that persisted above the pre-vaccination response to the final study visit in each trial. All vaccines preferentially induced antigen-specific CD4 T cell responses expressing Th1 cytokines; levels of IL-17-expressing cells were low or not detected. In M.tb-uninfected and -infected individuals, M72/AS01E induced higher memory Th1 cytokine-expressing CD4 T cell responses than other novel vaccine candidates. Cytokine co-expression profiles of memory CD4 T cells induced by different novel vaccine candidates were alike. Our study suggests that the T cell response feature which most differentiated between the TB vaccine candidates was response magnitude, whilst functional profiles suggested a lack of response diversity. Since M72/AS01E induced the highest memory CD4 T cell response it demonstrated the best vaccine take. In the absence of immunological correlates of protection, the likelihood of finding a protective vaccine by empirical testing of candidates may be increased by the addition of candidates that induce distinct immune characteristics.
Insights
Comparing novel tuberculosis (TB) vaccines, M72/AS01E induced the strongest antigen-specific CD4 T cell responses, suggesting it has the best vaccine take. This finding aids in prioritizing TB vaccine candidates for efficacy trials.
Area of Science:
- Immunology
- Vaccinology
- Infectious Diseases
Background:
- Tuberculosis (TB) remains a leading infectious cause of death globally, necessitating highly effective vaccines.
- Limited resources restrict the advancement of numerous TB vaccine candidates to large-scale efficacy trials.
- Objective comparison of T cell responses is crucial for prioritizing vaccine candidates.
Purpose of the Study:
- To statistically compare antigen-specific T cell responses induced by six novel TB vaccine candidates and Bacillus Calmette-Guérin (BCG).
- To establish a data-driven basis for prioritizing TB vaccine candidates for efficacy testing.
- To analyze response magnitude and cytokine co-expression profiles of memory T cells.
Main Methods:
- Analysis of antigen-specific CD4 and CD8 T cell frequencies expressing IFNγ, IL-2, TNF, and/or IL-17.
- Participants included adolescents and adults, with or without Mycobacterium tuberculosis (M.tb) infection.
- Vaccine candidates evaluated: MVA85A, AERAS-402, H1:IC31, H56:IC31, M72/AS01E, ID93+GLA-SE, and BCG.
Main Results:
- All vaccines primarily induced antigen-specific CD4 T cell responses with Th1 cytokines; IL-17 responses were minimal.
- M72/AS01E demonstrated significantly higher memory Th1 cytokine-expressing CD4 T cell responses in both M.tb-uninfected and -infected individuals compared to other novel candidates.
- Cytokine co-expression profiles were similar across novel vaccine candidates, with response magnitude being the key differentiator.
Conclusions:
- M72/AS01E exhibited the most robust 'vaccine take' by inducing the highest magnitude memory CD4 T cell response.
- The study highlights response magnitude as a critical factor in differentiating TB vaccine candidates.
- Incorporating vaccine candidates with distinct immune characteristics, like M72/AS01E, may enhance the success rate of empirical efficacy testing.
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