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Design of a stabilized RBD enables potently neutralizing SARS-CoV-2 single-component nanoparticle vaccines

Cell Rep. 2023-03; 
Thayne H Dickey, Rui Ma, Sachy Orr-Gonzalez, Tarik Ouahes, Palak Patel, Holly McAleese, Brandi Butler, Elizabeth Eudy, Brett Eaton, Michael Murphy, Jennifer L Kwan, Nichole D Salinas, Michael R Holbrook, Lynn E Lambert, Niraj H Tolia
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Recombinant Proteins … Dashed line indicates detection limit of assay, each point is … transformed cell line derived from human female kidney cells… RBD immunogens was cloned (GenScript) into a customized … Get A Quote

摘要

Waning immunity and emerging variants necessitate continued vaccination against severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2). Improvements in vaccine safety, tolerability, and ease of manufacturing would benefit these efforts. Here, we develop a potent and easily manufactured nanoparticle vaccine displaying the spike receptor-binding domain (RBD). Computational design to stabilize the RBD, eliminate glycosylation, and focus the immune response to neutralizing epitopes results in an RBD immunogen that resolves issues hindering the efficient nanoparticle display of the native RBD. This non-glycosylated RBD can be genetically fused to diverse single-component nanoparticle platforms, maximizing manu... More

关键词

CP: Immunology, CP: Microbiology, SPEEDesign, glycosylation, immunogen, nanoparticle, stabilized, structural vaccinology, structure-based design
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