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Multi high-throughput approach for highly selective identification of vaccine candidates: the Group A Streptococcus case. | LitMetric

AI Article Synopsis

  • * This method uses three advanced technologies—mass spectrometry-based proteomics, protein arrays, and flow-cytometry—to pinpoint surface-associated and secreted proteins as potential vaccine components.
  • * Testing our strategy on Group A Streptococcus, we found that combining three specific protective proteins provided broad protection against multiple strains, suggesting this approach could speed up vaccine discovery for bacteria in general.

Article Abstract

We propose an experimental strategy for highly accurate selection of candidates for bacterial vaccines without using in vitro and/or in vivo protection assays. Starting from the observation that efficacious vaccines are constituted by conserved, surface-associated and/or secreted components, the strategy contemplates the parallel application of three high throughput technologies, i.e. mass spectrometry-based proteomics, protein array, and flow-cytometry analysis, to identify this category of proteins, and is based on the assumption that the antigens identified by all three technologies are the protective ones. When we tested this strategy for Group A Streptococcus, we selected a total of 40 proteins, of which only six identified by all three approaches. When the 40 proteins were tested in a mouse model, only six were found to be protective and five of these belonged to the group of antigens in common to the three technologies. Finally, a combination of three protective antigens conferred broad protection against a panel of four different Group A Streptococcus strains. This approach may find general application as an accelerated and highly accurate path to bacterial vaccine discovery.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC3433891PMC
http://dx.doi.org/10.1074/mcp.M111.015693DOI Listing

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