Omicron-specific mRNA vaccination alone and as a heterologous booster against SARS-CoV-2

单独使用 Omicron 特异性 mRNA 疫苗以及作为异源加强针对抗 SARS-CoV-2 的疗效

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作者:Zhenhao Fang # ,Lei Peng # ,Renata Filler ,Kazushi Suzuki ,Andrew McNamara ,Qianqian Lin ,Paul A Renauer ,Luojia Yang ,Bridget Menasche ,Angie Sanchez ,Ping Ren ,Qiancheng Xiong ,Madison Strine ,Paul Clark ,Chenxiang Lin ,Albert I Ko ,Nathan D Grubaugh ,Craig B Wilen ,Sidi Chen

Abstract

The Omicron variant of SARS-CoV-2 recently swept the globe and showed high level of immune evasion. Here, we generate an Omicron-specific lipid nanoparticle (LNP) mRNA vaccine candidate, and test its activity in animals, both alone and as a heterologous booster to WT mRNA vaccine. Our Omicron-specific LNP-mRNA vaccine elicits strong antibody response in vaccination-naïve mice. Mice that received two-dose WT LNP-mRNA show a > 40-fold reduction in neutralization potency against Omicron than WT two weeks post boost, which further reduce to background level after 3 months. The WT or Omicron LNP-mRNA booster increases the waning antibody response of WT LNP-mRNA vaccinated mice against Omicron by 40 fold at two weeks post injection. Interestingly, the heterologous Omicron booster elicits neutralizing titers 10-20 fold higher than the homologous WT booster against Omicron variant, with comparable titers against Delta variant. All three types of vaccination, including Omicron alone, WT booster and Omicron booster, elicit broad binding antibody responses against SARS-CoV-2 WA-1, Beta, Delta variants and SARS-CoV. These data provide direct assessments of an Omicron-specific mRNA vaccination in vivo, both alone and as a heterologous booster to WT mRNA vaccine.

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