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Evaluation of a Group A Streptococcus synthetic oligosaccharide as vaccine candidate. | LitMetric

AI Article Synopsis

  • * Researchers have tested synthetic glycoconjugates made from GAS oligosaccharides, showing they provide similar immune protection as those made with the natural polysaccharide (GAS-PS).
  • * The study highlights how these synthetic glycoconjugates can enhance vaccine efficacy due to their increased antigen purity and easier production, which may improve future vaccine development against GAS.

Article Abstract

Bacterial infections caused by Group A Streptococcus (GAS) are a serious health care concern that currently cannot be prevented by vaccination. The GAS cell-wall polysaccharide (GAS-PS) is an attractive vaccine candidate due to its constant expression pattern on different bacterial strains and protective properties of anti-GAS-PS antibodies. Here we report for the first time the immunoprotective efficacy of glycoconjugates with synthetic GAS oligosaccharides as compared to those containing the native GAS-PS. A series of hexa- and dodecasaccharides based on the GAS-PS structure were prepared by chemical synthesis and conjugated to CRM(197). When tested in mice, the conjugates containing the synthetic oligosaccharides conferred levels of immunoprotection comparable to those elicited by the native conjugate. Antisera from immunized rabbits promoted phagocytosis of encapsulated GAS strains. Furthermore we discuss variables that might correlate with glycoconjugate immunogenicity and demonstrate the potential of the synthetic approach that benefits from increased antigen purity and facilitated manufacturing.

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Source
http://dx.doi.org/10.1016/j.vaccine.2010.09.018DOI Listing

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