4.8 Article

T cells control the generation of nanomolar-affinity anti-glycan antibodies

期刊

JOURNAL OF CLINICAL INVESTIGATION
卷 127, 期 4, 页码 1491-1504

出版社

AMER SOC CLINICAL INVESTIGATION INC
DOI: 10.1172/JCI91192

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资金

  1. Marie Curie Actions grant [VLPsiRNA-FP7-PEOPLE-2009-IOF-254069]
  2. NIH [R21 AI129871, R01 GM101421, R01 AI084817]
  3. Scripps Center for HIV/AIDS Vaccine Immunology and Immunogen Discovery [UM1 AI100663]
  4. International AIDS Vaccine Initiative (IAVI)
  5. US Agency for International Development (USAID)
  6. Ministry of Foreign Affairs of the Netherlands
  7. Bill & Melinda Gates Foundation
  8. US Department of Energy
  9. Consortium for Functional Glycomics (NIH NIGMS) [GM062116]

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Vaccines targeting glycan structures at the surface of pathogenic microbes must overcome the inherent T cell-independent nature of immune responses against glycans. Carbohydrate conjugate vaccines achieve this by coupling bacterial polysaccharides to a carrier protein that recruits heterologous CD4 T cells to help B cell maturation. Yet they most often produce low-to medium-affinity immune responses of limited duration in immunologically fit individuals and disappointing results in the elderly and immunocompromised patients. Here, we hypothesized that these limitations result from suboptimal T cell help. To produce the next generation of more efficacious conjugate vaccines, we have explored a synthetic design aimed at focusing both B cell and T cell recognition to a single short glycan displayed at the surface of a virus-like particle. We tested and established the proof of concept of this approach for 2 serotypes of Streptococcus pneumoniae. In both cases, these vaccines elicited serotype-specific, protective, and long-lasting IgG antibodies of nanomolar affinity against the target glycans in mice. We further identified a requirement for CD4 T cells in the anti-glycan antibody response. Our findings establish the design principles for improved glycan conjugate vaccines. We surmise that the same approach can be used for any microbial glycan of interest.

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