Zykova Anna A, Blokhina Elena A, Stepanova Liudmila A, Shuklina Marina A, Tsybalova Liudmila M, Kuprianov Victor V, Ravin Nikolai V
Institute of Bioengineering, Research Center of Biotechnology of the Russian Academy of Sciences, Moscow, Russia.
Smorodintsev Research Institute of Influenza, Russian Ministry of Health, St. Petersburg, Russia.
Nanomedicine. 2022 Jan;39:102463. doi: 10.1016/j.nano.2021.102463. Epub 2021 Sep 26.
The extracellular domain of the M2 protein (M2e) and conserved region of the second subunit of the hemagglutinin (HA2) could be used for the development of broad-spectrum vaccines against influenza A. Here we obtained and characterized recombinant mosaic proteins containing tandem copies of M2e and HA2 fused to an artificial self-assembling peptide (SAP). The inclusion of SAP peptides in the fusion proteins enabled their self-assembly in vitro into spherical particles with a size of 30-50 nm. Intranasal immunization of mice with these particles without additional adjuvants induced strong humoral immune response against M2e and the whole virus. Particles carrying both M2e and HA2 induced antigen-specific multifunctional CD4+ effector memory T cells. Immunization provided high protection of mice against the lethal challenge with different subtypes of influenza A virus. The obtained self-assembling nanoparticles can be used to develop a universal influenza vaccine.
M2蛋白的胞外结构域(M2e)和血凝素第二亚基的保守区域(HA2)可用于开发抗甲型流感的广谱疫苗。在此,我们获得并鉴定了重组嵌合蛋白,其包含与人工自组装肽(SAP)融合的M2e和HA2的串联拷贝。融合蛋白中包含SAP肽使其能够在体外自组装成大小为30 - 50纳米的球形颗粒。用这些颗粒对小鼠进行鼻内免疫,无需额外佐剂,可诱导针对M2e和全病毒的强烈体液免疫反应。携带M2e和HA2的颗粒可诱导抗原特异性多功能CD4 +效应记忆T细胞。免疫为小鼠提供了针对不同亚型甲型流感病毒致死性攻击的高度保护。所获得的自组装纳米颗粒可用于开发通用流感疫苗。