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Design and optimization of a subunit vaccine targeting COVID-19 molecular shreds using an immunoinformatics framework

机译:使用免疫信息框架靶向Covid-19分子筛的亚单位疫苗的设计与优化

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COVID-19 has been declared as a global health emergency and exposed the world to a deadly virus, which has dramatically changed the lives of humans for an unknown period of time. In the battleground with the virus, we have employed an immunoinformatics framework to design a robust vaccine as an insurance plan for the future. The pathogenic sequence with cryptic epitope taken from patients in Wuhan, China, was harnessed to design a promiscuous cytotoxic T-lymphocyte, helper T-lymphocyte, and B-cell epitope based subunit vaccine, engineered with adjuvants and conformational linkers. The reported vaccine has high antigenicity and immunogenicity profiles with potential TAP affinity, which ensures elevated antigen processing capability. It has strong binding with major histocompatibility complex (MHC) receptors (MHC-1 and MHC-2) and virus-specific membrane receptor TLR-2, with scores of ?1010.7, ?1035.7, and ?1076.3 kcal mol ~(?1) , respectively. Molecular dynamics simulation analysis was used to assess the stable binding with TLR-2 with minimal atomic motions through a deformation plot, covariance matrix, and elastic network. Importantly, an in silico immunization assay showed the reliable elicitation of key players in terms of immune cells together with memory cells to evoke adaptive immune responses upon administration of the construct. In view of favorable outcomes, we also propose a plausible vaccine mechanism to elicit an immune response to fight coronavirus.
机译:Covid-19已被宣布为全球健康紧急情况,并将世界暴露于致命的病毒,这大大改变了人类的生命,为未知的时间。在与病毒的战场中,我们使用免疫信息框架来设计一个坚固的疫苗作为未来的保险计划。利用来自中国武汉患者的患者的致病性序列,用于设计一种混杂的细胞毒性T淋巴细胞,辅助T淋巴细胞和基于B细胞疫苗的亚基疫苗,用佐剂和构象接头设计。报告的疫苗具有高抗原性和免疫原性谱,具有潜在的挖掘亲和力,其确保抗原处理能力升高。它与主要组织相容性复合物(MHC)受体(MHC-1和MHC-2)和病毒特异性膜受体TLR-2具有较强的结合,具有分数?1010.7,α1035.7,以及α1076.3kcal mol〜(?1) , 分别。分子动力学模拟分析用于评估通过变形图,协方差矩阵和弹性网络的最小原子运动与TLR-2的稳定结合。重要的是,在硅免疫测定中,在免疫细胞与记忆细胞一起显示关键参与者的可靠引发,以在施用构建体时引起适应性免疫应答。鉴于有利的结果,我们还提出了一种合理的疫苗机制,以引发对抗冠状病毒的免疫反应。

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