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Co-immunization with tandem repeat heterologous M2 extracellular proteins overcomes strain-specific protection of split vaccine against influenza A virus

机译:与串联重复异源M2细胞外蛋白的共同免疫克服了针对A型流感病毒的分裂疫苗的菌株特异性保护

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摘要

Current influenza vaccines are less efficacious against antigenically different influenza A viruses. This study presents an approach to overcome strain-specific protection, using a strategy of co-immunization with seasonal H3N2 split vaccine and yeast-expressed soluble proteins of a tandem repeat containing heterologous influenza M2 ectodomains (M2e5x). Co-immunization with both vaccines in mice was superior to either vaccine alone in inducing cross protection against heterologous H3N2 virus by raising M2e-specific humoral and cellular immune responses toward a T-helper type 1 profile inducing IgG2a isotype antibodies as well as interferon-γ-producing cells in systemic and mucosal sites. In addition, co-immunization sera were found to confer cross-protection against different subtypes of H1N1 and H5N1 influenza A viruses in naïve mice. A mechanistic study provides evidence that activation of dendritic cells by co-stimulation with M2e5x and split vaccine was associated with the proliferation of CD4+ T cells. Our results suggest that a strategy of co-immunization with seasonal split and M2e5x protein vaccines could be a promising approach for overcoming the limitation of strain-specific protection by current influenza vaccination.
机译:当前的流感疫苗对抗原性不同的甲型流感病毒的效力较差。这项研究提出了一种使用季节性H3N2裂解疫苗和含有异源流感M2胞外域(M2e5x)的串联重复序列的酵母表达的可溶性蛋白共同免疫的策略来克服菌株特异性保护。在小鼠中,通过提高针对T型辅助1型谱的IgG2a同型抗体以及干扰素-γ的M2e特异性体液和细胞免疫应答,在小鼠中两种疫苗的共免疫优于单独使用两种疫苗的交叉免疫。体和粘膜部位产生细胞。此外,在幼稚的小鼠中,发现共同免疫血清可以对H1N1和H5N1甲型流感病毒的不同亚型提供交叉保护。一项机理研究提供了证据,即与M2e5x和裂解疫苗共同刺激激活树突状细胞与CD4 + T细胞的增殖有关。我们的结果表明,与季节性分裂疫苗和M2e5x蛋白疫苗共同免疫的策略可能是克服当前流感疫苗对菌株特异性保护的局限性的有前途的方法。

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