Article (Scientific journals)
Use of virus-like particles and nanoparticle-based vaccines for combating picornavirus infections.
Ren, Mei; Abdullah, Sahibzada Waheed; Pei, Chenchen et al.
2024In Veterinary Research, 55 (1), p. 128
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Keywords :
Virus-like particles; adjuvant; nanoparticles; picornavirus; vaccine; Viral Vaccines; Vaccines, Virus-Like Particle; Animals; Nanoparticles; Viral Vaccines/immunology; Picornaviridae Infections/veterinary; Picornaviridae Infections/prevention & control; Picornaviridae Infections/immunology; Vaccines, Virus-Like Particle/immunology; Picornaviridae/immunology; Picornaviridae; Picornaviridae Infections; Medicine (all)
Abstract :
[en] Picornaviridae are non-enveloped ssRNA viruses that cause diseases such as poliomyelitis, hand-foot-and-mouth disease (HFMD), hepatitis A, encephalitis, myocarditis, and foot-and-mouth disease (FMD). Virus-like particles (VLPs) vaccines mainly comprise particles formed through the self-assembly of viral capsid proteins (for enveloped viruses, envelope proteins are also an option). They do not contain the viral genome. On the other hand, the nanoparticles vaccine (NPs) is mainly composed of self-assembling biological proteins or nanomaterials, with viral antigens displayed on the surface. The presentation of viral antigens on these particles in a repetitive array can elicit a strong immune response in animals. VLPs and NPs can be powerful platforms for multivalent antigen presentation. This review summarises the development of virus-like particle vaccines (VLPs) and nanoparticle vaccines (NPs) against picornaviruses. By detailing the progress made in the fight against various picornaviruses such as poliovirus (PV), foot-and-mouth disease virus (FMDV), enterovirus (EV), Senecavirus A (SVA), and encephalomyocarditis virus (EMCV), we in turn highlight the significant strides made in vaccine technology. These advancements include diverse construction methods, expression systems, elicited immune responses, and the use of various adjuvants. We see promising prospects for the continued development and optimisation of VLPs and NPs vaccines. Future research should focus on enhancing these vaccines' immunogenicity, stability, and delivery methods. Moreover, expanding our understanding of the interplay between these vaccines and the immune system will be crucial. We hope these insights will inspire and guide fellow researchers in the ongoing quest to combat picornavirus infections more effectively.
Precision for document type :
Review article
Disciplines :
Veterinary medicine & animal health
Author, co-author :
Ren, Mei  ;  Université de Liège - ULiège > TERRA Research Centre ; State Key Laboratory for Animal Disease Control and Prevention, CollegeofVeterinaryMedicine, Lanzhou UniversityLanzhou Veterinary Research InstituteChinese Academy of Agricultural Sciences, Lanzhou, 730000, China
Abdullah, Sahibzada Waheed;  Livestock and dairy development department peshawar, Government of Khyber Pakhtunkhwa, Peshawar, Pakistan
Pei, Chenchen;  State Key Laboratory for Animal Disease Control and Prevention, CollegeofVeterinaryMedicine, Lanzhou UniversityLanzhou Veterinary Research InstituteChinese Academy of Agricultural Sciences, Lanzhou, 730000, China
Guo, Huichen;  State Key Laboratory for Animal Disease Control and Prevention, CollegeofVeterinaryMedicine, Lanzhou UniversityLanzhou Veterinary Research InstituteChinese Academy of Agricultural Sciences, Lanzhou, 730000, China
Sun, Shiqi ;  State Key Laboratory for Animal Disease Control and Prevention, CollegeofVeterinaryMedicine, Lanzhou UniversityLanzhou Veterinary Research InstituteChinese Academy of Agricultural Sciences, Lanzhou, 730000, China. sunshiqi@caas.cn
Language :
English
Title :
Use of virus-like particles and nanoparticle-based vaccines for combating picornavirus infections.
Publication date :
30 September 2024
Journal title :
Veterinary Research
ISSN :
0928-4249
eISSN :
1297-9716
Publisher :
Springer Science and Business Media LLC, England
Volume :
55
Issue :
1
Pages :
128
Peer reviewed :
Peer Reviewed verified by ORBi
Funding text :
This article was funded by Local Financial Funds of National Agricultural Science and Technology Center, Chengdu (NASC2024KR06), Lanzhou Talent Innovation and Entrepreneurship Project (2023-RC-3), the Science and Technology Major Project of Gansu Provine (23ZDNA007), the Natural Science Foundation of Gansu Province (22JR5RA032, 23JRRA551).
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since 04 November 2024

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