Ferritin nanoparticle-based Nipah virus glycoprotein vaccines elicit potent protective immune responses in mice and hamsters

Nipah virus (NiV) is a zoonotic paramyxovirus in the genus Henipavirus that is prevalent in Southeast Asia. NiV leads to severe respiratory disease and encephalitis in humans and animals, with a mortality rate of up to 75%. Despite the grave threat to public health and global biosecurity, no medical...

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Veröffentlicht in:Virologica Sinica 2024-09
Hauptverfasser: Chen, Shaohong, Zhang, Xinghai, Yao, Yanfeng, Wang, Shengdong, Li, Kangyin, Zhang, Baoyue, Ye, Tianxi, Chen, Li, Wu, Yan, Li, Entao, Xu, Bichao, Zhang, Pei, Chuai, Xia, Ran, Yong, Gong, Rui, Zhang, Huajun, Chiu, Sandra
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Sprache:eng
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Zusammenfassung:Nipah virus (NiV) is a zoonotic paramyxovirus in the genus Henipavirus that is prevalent in Southeast Asia. NiV leads to severe respiratory disease and encephalitis in humans and animals, with a mortality rate of up to 75%. Despite the grave threat to public health and global biosecurity, no medical countermeasures are available for humans. Here, based on self-assembled ferritin nanoparticles (FeNPs), we successfully constructed two candidate FeNP vaccines by loading mammalian cells expressing NiV sG (residues 71–602, FeNP-sG) and Ghead (residues 182–602, FeNP-Ghead) onto E. coli-expressed FeNPs (FeNP-sG and FeNP-Ghead, respectively) through Spycatcher/Spytag technology. Compared with sG and Ghead alone, FeNP-sG and FeNP-Ghead elicited significant NiV specific neutralizing antibody levels and T-cell responses in mice, whereas the immune response in the FeNP-sG immunized group was greater than that in the FeNP-Ghead group. These results further demonstrate that sG possesses greater antigenicity than Ghead and that FeNPs can dramatically enhance immunogenicity. Furthermore, FeNP-sG provided 100% protection against NiV challenge in a hamster model when it was administered twice at a dose of 5 μg/per animal. Our study provides not only a promising candidate vaccine against NiV, but also a theoretical foundation for the design of a NiV immunogen for the development of novel strategies against NiV infection. •Based on self-assembled ferritin nanoparticles (FeNPs), we constructed two candidate FeNP vaccines (FeNP-sG and FeNP-Ghead).•Nanoparticles vaccines elicit robust antibody and T-cell responses in mice.•The FeNP-sG nanoparticle vaccine conferred 100% protection against lethal NiV challenge in hamsters.
ISSN:1995-820X
1995-820X
DOI:10.1016/j.virs.2024.09.005