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Mining the CD4 antigen repertoire for next-generation tuberculosis vaccines

Cell. 2025-09; 
Samuel J Vidal, Ninaad Lasrado, Lisa H Tostanoski, Jayeshbhai Chaudhari, Esther R Mbiwan, Ganad D Neka, Ellis A Strutton, Alejandro A Espinosa Perez, Daniel Sellers, Julia Barrett, Michelle Lifton, Shoko Wakabayashi, Behnaz Eshaghi, Erica N Borducchi, Malika Aid, Wenjun Li, Thomas J Scriba, Ana Jaklenec, Robert Langer, Dan H Barouch Center for Virology and Vaccine Research, Beth Israel Deaconess Medical Center, Harvard Medical School, Boston
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Peptide Services Mtb peptide pools from Rv1387, Rv0287, Rv1788, Rv0125 (MTB32A), Rv1196 (MTB39A), and combined Rv3875 (ESAT6) and Rv3874 (CFP10, all GenScript) were prepared and plated at a concentration of 2 μg per well, and 100,000 cells per well were added to the plate. Get A Quote

Abstract

Tuberculosis (TB) is the leading cause of death from infectious disease worldwide, and Bacillus Calmette-Guérin (BCG) remains the only clinically approved vaccine. An enduring challenge in TB vaccine development is systematic antigen selection from a large repertoire of potential candidates. We performed an efficacy screen in mice of antigens that are targets of CD4 T cells in humans. We found striking heterogeneity in protective efficacy, and most of the top protective antigens are not currently in clinical development. We observed immunologic cross-reactivity among phylogenetically clustered antigens, reflecting common CD4 epitopes. We developed a trivalent mRNA vaccine consisting of PPE20 (Rv1387), EsxG (Rv... More

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