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In silico Designed Ebola Virus T-Cell Multi-Epitope DNA Vaccine Constructions Are Immunogenic in Mice

机译:在Silico设计的埃博拉病毒T细胞多表位DNA疫苗结构是小鼠的免疫原性

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摘要

Background: The lack of effective vaccines against Ebola virus initiates a search for new approaches to overcoming this problem. The aim of the study was to design artificial polyepitope T-cell immunogens—candidate DNA vaccines against Ebola virus and to evaluate their capacity to induce a specific immune response in a laboratory animal model. Method: Design of two artificial polyepitope T-cell immunogens, one of which (EV.CTL) includes cytotoxic and the other (EV.Th)—T-helper epitopes of Ebola virus proteins was carried out using original TEpredict/PolyCTLDesigner software. Synthesized genes were cloned in pcDNA3.1 plasmid vector. Target gene expression was estimated by synthesis of specific mRNAs and proteins in cells transfected with recombinant plasmids. Immunogenicity of obtained DNA vaccine constructs was evaluated according to their capacity to induce T-cell response in BALB/c mice using IFN ELISpot and ICS. Results: We show that recombinant plasmids pEV.CTL and pEV.Th encoding artificial antigens provide synthesis of corresponding mRNAs and proteins in transfected cells, as well as induce specific responses both to CD4+ and CD8+ T-lymphocytes in immunized animals. Conclusions: The obtained recombinant plasmids can be regarded as promising DNA vaccine candidates in future studies of their capacity to induce cytotoxic and protective responses against Ebola virus.
机译:背景:对埃博拉病毒的缺乏有效的疫苗引发了克服这个问题的新方法。该研究的目的是设计针对埃博拉病毒的人工多素蛋白T细胞免疫原 - 候选DNA疫苗,并评估它们在实验室动物模型中诱导特异性免疫应答的能力。方法:两个人工多抗原决定簇的T细胞的免疫原,其中(EV.CTL)之一包括埃博拉病毒蛋白的细胞毒性,而另一个(EV.Th)-T辅助表位的设计进行了使用原始TEpredict / PolyCTLDesigner软件。在PCDNA3.1质粒载体中克隆合成基因。通过用重组质粒转染的细胞中的特异性mRNA和蛋白质来估计靶基因表达。通过使用IFN ELISPOT和ICS在BALB / C小鼠中诱导T细胞应答的能力来评价获得的DNA疫苗构建体的免疫原性。结果:我们展示了编码人工抗原的重组质粒PEV.CTL和PEV.TH提供了转染细胞中的相应MRNA和蛋白质的合成,以及诱导免疫动物中CD4 +和CD8 + T淋巴细胞的特定反应。结论:获得的重组质粒可以被认为是未来的DNA疫苗候选者,以便在其诱导对埃博拉病毒的细胞毒性和保护反应的能力的能力进行研究。

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