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A recombinant spike protein subunit vaccine confers protective immunity against SARS-CoV-2 infection and transmission in hamsters.

Yangtao WuXiaofen HuangLunzhi YuanShaojuan WangYali ZhangHualong XiongRirong ChenJian MaRuoyao QiMeifeng NieJingjing XuZhigang ZhangLiqiang ChenMin WeiMing ZhouMinping CaiYang ShiLiang ZhangHuan YuJunping HongZikang WangYunda HongMingxi YueZonglin LiDabing ChenQingbing ZhengShao-Wei LiYixin ChenTong ChengJun ZhangTian-Ying ZhangHuachen ZhuQinjian ZhaoQuan YuanYi GuanNing-Shao Xia
Published in: Science translational medicine (2021)
Multiple safe and effective vaccines that elicit immune responses against severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2) are necessary to respond to the ongoing coronavirus disease 2019 (COVID-19) pandemic. Here, we developed a protein subunit vaccine composed of spike ectodomain protein (StriFK) plus a nitrogen bisphosphonate-modified zinc-aluminum hybrid adjuvant (FH002C). StriFK-FH002C generated substantially higher neutralizing antibody titers in mice, hamsters, and cynomolgus monkeys than those observed in plasma isolated from COVID-19 convalescent individuals. StriFK-FH002C also induced both TH1- and TH2-polarized helper T cell responses in mice. In hamsters, StriFK-FH002C immunization protected animals against SARS-CoV-2 challenge, as shown by the absence of virus-induced weight loss, fewer symptoms of disease, and reduced lung pathology. Vaccination of hamsters with StriFK-FH002C also reduced within-cage virus transmission to unvaccinated, cohoused hamsters. In summary, StriFK-FH002C represents an effective, protein subunit-based SARS-CoV-2 vaccine candidate.
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