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A Divalent Chikungunya and Zika Nanovaccine with Thermostable Self-Assembly Multivalent Scaffold LS-SUMO

Adv Healthc Mater. 2024-02; 
Qianlin Li, Jinsong Zhang, Qiang Deng, Conghui Liao, Jun Qian, Zeliang Chen, Jiahai Lu
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Molecular Biology Reagents … All proteins were filtered through a 0.25 μm filter (PALL) and … kit (GenScript). Endotoxin levels were ≤1.0 endotoxin unit (EU)/mg as detected by LAL Endotoxin Assay Kit (GenScript). … Get A Quote

摘要

The convergence strategies of antigenic subunits and synthetic nanoparticle scaffold platform improve the vaccine production efficiency and enhance vaccine-induced immunogenicity. Selecting the appropriate nanoparticle scaffold is crucial to controlling target antigens immunologically. Lumazine synthase (LS) is an attractive candidate for a vaccine display system due to its thermostability, modification tolerance, and morphological plasticity. Here, the first development of a multivalent thermostable scaffold, LS-SUMO (SUMO, small ubiquitin-likemodifier), and a divalent nanovaccine covalently conjugated with Chikungunya virus E2 and Zika virus EDIII antigens, is reported. Compared with antigen monomers, LS-SUMO... More

关键词

Chikungunya, SUMO, Zika, lumazine synthase, nanoparticle, nanovaccine
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