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Development of a multivalent enterovirus subunit vaccine based on immunoinformatic design principles for the prevention of HFMD

机译:基于免疫信息设计原则的预防HFMD的多价肠道病毒亚单位疫苗的发展

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Hand, foot and mouth disease (HFMD) is mainly caused by EV-A71 and CV-A16. An increasing number of cases have been found to be caused by CV-A10, CV-A6, CV-B3 and the outbreaks are becoming increasingly more complex, often accompanied by the prevalence of a variety of enteroviruses. Based on the principle of synthetic peptide vaccines, we applied immune-informatics to design a highly efficient and safe multivalent epitope-based vaccine against EV-A71, CV-A16, CV-A10, CV-A6 and CV-B3. By screening B-cells, HTL and CTL cell antigen epitopes with high conservativity and immunogenicity that have no toxic effect on the host, further analysis confirmed that the vaccine built was IFN-gamma inductive and IL-4 non-inductive HTL cell epitopes and had population coverage corresponding to MHC molecular alleles associated with T-cell phenotype. The multivalent enterovirus vaccine was constructed to connect the 50 s ribosomal protein L7/L12 adjuvant and candidate epitopes sequentially through appropriate linkers. Then, the antigenic, allergen and physical properties of the vaccine were evaluated, followed by a secondary structure analysis and tertiary structure modeling, disulfide engineering, refinement and validation. Moreover, the conformational B cell epitope of the vaccine was analyzed. The stability of the TLR4/MD2/Vaccine complex and details at atomic level were investigated by docking and molecular dynamics simulation. Finally, in silico immune simulation and in vivo immune experiments were done. This study provides a high cost-effective method of designing a multivalent enterovirus vaccine protect against a wide range of enterovirus pathogens. (C) 2020 Elsevier Ltd. All rights reserved.
机译:手,脚和口腔疾病(HFMD)主要由EV-A71和CV-A16引起。已发现越来越多的病例是由CV-A10,CV-A6,CV-B3和爆发产生越来越复杂,通常伴随着各种肠病病毒的患病率。基于合成肽疫苗的原理,我们应用免疫信息学专用对EV-A71,CV-A16,CV-A10,CV-A6和CV-B3的高效和安全的多价表位疫苗。通过筛选具有高保守和免疫原性的B细胞,HTL和CTL细胞抗原表位对宿主没有毒性作用,进一步分析证实,疫苗构建为IFN-Gamma诱导和IL-4非感应HTL细胞表位并具有对应于与T细胞表型相关的MHC分子等位基因的人口覆盖。构建多价肠道病毒疫苗以通过适当的接头依次连接50s核糖体蛋白L7 / L12佐剂和候选表位。然后,评估疫苗的抗原,过敏原和物理性质,然后进行二次结构分析和三级结构建模,二硫化物工程,改进和验证。此外,分析了疫苗的构象B细胞表位。通过对接和分子动力学模拟研究了TLR4 / MD2 /疫苗复合物的稳定性和原子水平的细节。最后,在硅免疫模拟中,进行体内免疫实验。本研究提供了一种设计多价肠道病毒疫苗免受各种肠道病毒病原体的高成本效益的方法。 (c)2020 elestvier有限公司保留所有权利。

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