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首页> 外文期刊>ACS applied materials & interfaces >A Self-Adjuvanted, Modular, Antigenic VLP for Rapid Response to Influenza Virus Variability
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A Self-Adjuvanted, Modular, Antigenic VLP for Rapid Response to Influenza Virus Variability

机译:一种自佐剂,模块化,抗原VLP,用于快速响应流感病毒变异性

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The continuous evolution of influenza A virus (IAV) requires the influenza vaccine formulations to be updated annually to provide adequate protection. Recombinant protein-based vaccines provide safer, faster, and a more scalable alternative to the conventional embryonated egg approach for developing vaccines. However, these vaccines are typically poorer in immunogenicity than the vaccines containing inactivated or attenuated influenza viruses and require administration of a large antigen dosage together with potent adjuvants. The presentation of protein antigens on the surface of virus-like particles (VLP) provides an attractive strategy to rapidly induce stronger antigen-specific immune responses. Here we have examined the immunogenic potential and protective efficacy of P22 VLPs conjugated with multiple copies of the globular head domain of the hemagglutinin (HA) protein from the PR8 strain of IAV in a murine model of influenza pathogenesis. Using a covalent attachment strategy (SpyTag/SpyCatcher), we conjugated the HA globular head, which was recombinantly expressed in a genetically modified E. coli strain and found to refold as a monomer, to preassembled P22 VLPs. Immunization of mice with this P22-HAhead conjugate provided full protection from morbidity and mortality following infection with a homologous IAV strain. Moreover, the P22-HAhead conjugate also elicited an accelerated and enhanced HA head specific IgG response, which was significantly higher than the soluble HA head, or the admixture of P22 and HA head without the need for adjuvants. Thus, our results show that the HA head can be easily prepared by in vitro refolding in a modified E. coli strain, maintaining its intact structure and enabling the induction of a strong immune response when conjugated to P22 VLPs, even when presented as a monomer. These results also demonstrate that the P22 VLPs can be rapidly modified in a modular fashion, resulting in an effective vaccine construct that can generate protective immunity without the need for additional adjuvants.
机译:流感病毒(IAV)的连续演变需要每年更新流感疫苗制剂以提供足够的保护。基于重组的蛋白质的疫苗提供更安全,更快,更可扩展的替代常规侵蚀疫苗的替代方法。然而,这些疫苗通常比含有含有灭活或减弱的流感病毒的疫苗较差,并且需要将大抗原剂量与有效佐剂一起施用。病毒样颗粒表面(VLP)表面上的蛋白质抗原的呈现提供了一种有吸引力的策略,以迅速诱导更强的抗原特异性免疫应答。在这里,我们研究了来自IAV的PR8菌株在流感发病机制的鼠模型的PR8菌株中与血凝素(HA)蛋白的多拷贝缀合的免疫原性潜在和保护效果。使用共价附着策略(Spytag / Spycatcher),我们将HA球状头缀合,该HA球形头在遗传修饰的大肠杆菌菌株中重组表达,发现重新折叠为单体,以预先描述P22 VLP。用这种p22-hahead缀合物的小鼠免疫小鼠提供了用同源IAV菌株感染后的发病率和死亡率的全面保护。此外,P22-Hahead缀合物还引发了加速和增强的HA头特异性IgG反应,其显着高于可溶性HA头,或P22和HA头的混合物,而无需佐剂。因此,我们的结果表明,HA头可以通过在改性的大肠杆菌菌株中体外重折叠来容易地制备,保持其完整结构并使当缀合与P22 VLP时,即使当呈递单体时也能够诱导强免疫应答。这些结果还表明,P22 VLP可以以模块化方式快速修饰,导致有效的疫苗构建体,其可以产生保护性免疫,而不需要额外的佐剂。

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