Homologous and Heterologous Vaccination Regimens with mRNA and rVSV Platforms Induce Potent Immune Responses Against SFTSV Glycoprotein.

采用 mRNA 和 rVSV 平台的同源和异源疫苗接种方案可诱导针对 SFTSV 糖蛋白的强效免疫反应

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作者:Manzoni Tomaz B, Westover Jonna B, Lundgreen Kendall A, Hicks Philip D, Petch Raegan J, Ort Jordan T, Weissman Drew, Fan Steven H Y, Hensley Scott E, Pardi Norbert, Gowen Brian B, Bates Paul
BACKGROUND: Severe fever with thrombocytopenia syndrome virus (SFTSV) is a highly pathogenic bunyavirus with a high case-fatality ratio for which there is no approved vaccine. Studies have assessed different vaccine technologies. However, few studies have yet assessed the immunogenicity of heterologous prime-boost regimens. METHODS: Here, we compare a lipid nanoparticle (LNP)-encapsulated nucleoside-modified mRNA-based vaccine encoding the SFTSV glycoproteins, Gn and Gc, to our recently described recombinant VSV SFTSV (rVSV-SFTSV) vaccine in single dose, homologous, and heterologous prime-boost regimens in mice. RESULTS: We show that all regimens protect from pathogenic SFTSV challenge and elicit strong long-lasting antibody responses. Furthermore, strong cellular immunity is elicited by mRNA-LNP immunizations and by heterologous immunization with an rVSV-SFTSV prime and mRNA-LNP boost. Cellular responses robustly polarized towards a type 1 response, characterized by high levels of IFNγ, TNFα, and IL-2. Immunization with mRNA led to a mixed type 1/type 2 immune response, as determined by antibody isotypes IgG1 and IgG2c. We found that homologous immunization leads to stronger antibody responses while heterologous immunization drives a slightly stronger cellular response. CONCLUSIONS: Taken together, the vaccine platforms described here represent strong vaccine candidates for further development.

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