Inactivated Rabies Virus Vectored MERS-Coronavirus Vaccine Induces Protective Immunity in Mice, Camels, and Alpacas

灭活狂犬病毒载体MERS冠状病毒疫苗在小鼠、骆驼和羊驼中诱导保护性免疫

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作者:Hang Chi, Yanqun Wang, Entao Li, Xiwen Wang, Hualei Wang, Hongli Jin, Qiuxue Han, Zhenshan Wang, Xinyue Wang, Airu Zhu, Jing Sun, Zhen Zhuang, Lu Zhang, Jingmeiqi Ye, Haijun Wang, Na Feng, Mingda Hu, Yuwei Gao, Jincun Zhao, Yongkun Zhao, Songtao Yang, Xianzhu Xia

Abstract

Middle East respiratory syndrome coronavirus (MERS-CoV) is an emergent coronavirus that has caused frequent zoonotic events through camel-to-human spillover. An effective camelid vaccination strategy is probably the best way to reduce human exposure risk. Here, we constructed and evaluated an inactivated rabies virus-vectored MERS-CoV vaccine in mice, camels, and alpacas. Potent antigen-specific antibody and CD8+ T-cell responses were generated in mice; moreover, the vaccination reduced viral replication and accelerated virus clearance in MERS-CoV-infected mice. Besides, protective antibody responses against both MERS-CoV and rabies virus were induced in camels and alpacas. Satisfyingly, the immune sera showed broad cross-neutralizing activity against the three main MERS-CoV clades. For further characterization of the antibody response induced in camelids, MERS-CoV-specific variable domains of heavy-chain-only antibody (VHHs) were isolated from immunized alpacas and showed potent prophylactic and therapeutic efficacies in the Ad5-hDPP4-transduced mouse model. These results highlight the inactivated rabies virus-vectored MERS-CoV vaccine as a promising camelid candidate vaccine.

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