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DOE OSTI · 1644694

Optimizing immunization protocols to elicit broadly neutralizing antibodies

Abstract

Significance The global health burden could be substantially alleviated by the creation of universal vaccines against highly mutable pathogens like HIV and influenza. Broadly neutralizing antibodies (bnAbs) are encouraging targets for such vaccines, because they can bind to diverse strains of these pathogens. BnAbs typically develop only after the immune system has been exposed to many mutated versions of a pathogen, and then too in few people and low numbers. Thus, sequentially administering multiple different pathogen-like proteins is a promising strategy to elicit bnAbs through vaccination. However, it remains unclear how best to design/administer these proteins. We explore this using physics-based simulations and provide mechanistic insights into antibody evolution that could guide creation of universal vaccines against highly mutable pathogens.

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BibTeXRIS

Sprenger, Kayla G., Louveau, Joy E., Murugan, Pranav M., Chakraborty, Arup K.. 2020-08-03. Optimizing immunization protocols to elicit broadly neutralizing antibodies. https://doi.org/10.1073/pnas.1919329117

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