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Chimeric RHDV Virus-Like Particles Displaying Foot-and-Mouth Disease Virus Epitopes Elicit Neutralizing Antibodies and Confer Partial Protection in Pigs

Authors :
Ministerio de Ciencia e Innovación (España)
Comunidad de Madrid
European Commission
Fundación la Caixa
Rangel, Giselle [0000-0001-6825-3803]
Bárcena, Juan [0000-0001-6050-0654]
Mata, Carlos P [0000-0003-3381-7431]
Castón, José R. [0000-0003-2350-9048]
Alejo, Alí [0000-0002-1613-6063]
Blanco, Esther [0000-0001-8413-4222]
Rangel, Giselle
Bárcena, Juan
Moreno, Noelia
Mata, Carlos P.
Castón, José R.
Alejo, Alí
Blanco, Esther
Ministerio de Ciencia e Innovación (España)
Comunidad de Madrid
European Commission
Fundación la Caixa
Rangel, Giselle [0000-0001-6825-3803]
Bárcena, Juan [0000-0001-6050-0654]
Mata, Carlos P [0000-0003-3381-7431]
Castón, José R. [0000-0003-2350-9048]
Alejo, Alí [0000-0002-1613-6063]
Blanco, Esther [0000-0001-8413-4222]
Rangel, Giselle
Bárcena, Juan
Moreno, Noelia
Mata, Carlos P.
Castón, José R.
Alejo, Alí
Blanco, Esther
Publication Year :
2021

Abstract

Currently there is a clear trend towards the establishment of virus-like particles (VLPs) as a powerful tool for vaccine development. VLPs are tunable nanoparticles that can be engineered to be used as platforms for multimeric display of foreign antigens. We have previously reported that VLPs derived from rabbit hemorrhagic disease virus (RHDV) constitute an excellent vaccine vector, capable of inducing specific protective immune responses against inserted heterologous T-cytotoxic and B-cell epitopes. Here, we evaluate the ability of chimeric RHDV VLPs to elicit immune response and protection against Foot-and-Mouth disease virus (FMDV), one of the most devastating livestock diseases. For this purpose, we generated a set of chimeric VLPs containing two FMDV-derived epitopes: a neutralizing B-cell epitope (VP1 (140-158)) and a T-cell epitope [3A (21-35)]. The epitopes were inserted joined or individually at two different locations within the RHDV capsid protein. The immunogenicity and protection potential of the chimeric VLPs were analyzed in the mouse and pig models. Herein we show that the RHDV engineered VLPs displaying FMDV-derived epitopes elicit a robust neutralizing immune response in mice and pigs, affording partial clinical protection against an FMDV challenge in pigs.

Details

Database :
OAIster
Notes :
English
Publication Type :
Electronic Resource
Accession number :
edsoai.on1356200718
Document Type :
Electronic Resource