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Universal anti-influenza vaccines based on viral HA2 and M2e antigens.

作者信息

Kostolanský F, Tomčíková K, Briestenská K, Mikušová M, Varečková E

出版信息

Acta Virol. 2020;64(4):417-426. doi: 10.4149/av_2020_408.


DOI:10.4149/av_2020_408
PMID:33151738
Abstract

Aquatic birds are the main reservoir of influenza A viruses (IAVs). These viruses can infect humans repeatedly and cause acute respiratory disease with potential of spread in the form of epidemics. In addition, avian influenza viruses that overcome the interspecies barrier and adapt to humans can cause a world-wide pandemic with severe consequences to human health. Therefore, scientists are focused on the development of a "universal" vaccine with a broad protective efficacy, i.e. against different subtypes of influenza A viruses and not only against the currently co-circulating human epidemic strains. Nowadays, several new vaccine design strategies have been described. Most of them utilize the conserved stem part of influenza surface glycoprotein hemagglutinin (HA) or the ectodomain of M2 (M2e) protein with proton-channel activity. A comparison of the efficacy of novel vaccines and their protective mechanisms against influenza infection is discussed in this review and should be considered for the construction of the most effective broadly protective vaccine with minimal side effects. This is the essential goal in influenza virus research today, especially when the infection with new human coronavirus SARS-CoV-2 can interfere with the course of influenza virus infection. Keywords: influenza A virus; HA2 gp; M2 ectodomain; universal vaccine.

摘要

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引用本文的文献

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Design, Synthesis and Evaluation of a Candidate Fusion Epitopic Construct Vaccine Based on M2e, HA1, HA2, NA and NP Fragments of the Highly Pathogenic Avian H5N1 Influenza Virus.

Arch Razi Inst. 2024-8-1

[2]
A novel method to assess antibody-dependent cell-mediated cytotoxicity against influenza A virus M2 in immunized murine models.

Biosaf Health. 2024-4-17

[3]
A Single-Component Multilayered Self-Assembling Protein Nanoparticle Vaccine Based on Extracellular Domains of Matrix Protein 2 against Both Influenza A and B.

Vaccines (Basel). 2024-8-28

[4]
Single-Component Multilayered Self-Assembling Protein Nanoparticles Displaying Extracellular Domains of Matrix Protein 2 as a Pan-influenza A Vaccine.

ACS Nano. 2023-12-12

[5]
Influenza and Universal Vaccine Research in China.

Viruses. 2022-12-30

[6]
Immunogenicity and Protective Potential of Mucosal Vaccine Formulations Based on Conserved Epitopes of Influenza A Viruses Fused to an Innovative Ring Nanoplatform in Mice and Chickens.

Front Immunol. 2021

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