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Polytope DNA Vaccine Development Against Hepatitis C Virus: A Streamlined Approach from In Silico Design to In Vitro and Primary In Vivo Analyses in BALB/c Mice

机译:丙型肝炎病毒多表位DNA疫苗开发:从计算机设计到体外和主要体内BALB / c小鼠分析的简化方法。

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摘要

For chronic viral infections like Hepatitis C, CD8-CTLs have emerged as important protective tools. Hence, isolated dominant epitopes arranged as polytope DNA or peptide vaccines represent a promising approach. However, because of controversial rules governing the polytope construction and epitope processing, proper design and primary analysis of such vaccines are prior to the costly transgenic animal studies. In this study, based on in silico epitope selection, four HLA-A2 (C132, E614 and N1406) and H-2(d) (E405 and C132) immunodominant CD8-epitopes of HCV were selected. The codon optimized nucleotide sequences of the epitopes were assembled by overlap extension PCR in three different sequential tandems for the best proteasomal cleavage predictions and cloned into pcDNA3.1 vector. In addition, to enhance particulate formation, three other plasmids containing the fusion of polytopes with hepatitis B surface antigen gene (HBsAg) were also constructed. Proper expression of all constructs in transfected Cos-7 cells was verified by RT-PCR, immunofluorescence, Western-blot, ELISA and dot blot techniques. Moreover, particle formation of HBsAg-fused polytopes was manifested by their secretion to the culture media albeit in lesser amounts compared to sole HBsAg protein. Finally, the positive delayed-type hypersensitivity (DTH) response of vaccinated mice indicated the in vivo expression of all constructs and efficient stimulation of immune response, which was stronger for HBsAg fusion constructs. In addition, proper processing of the epitopes was evidenced by the DTH response towards H-2(d) epitopic peptides. These data provide enough support and merit for the further evaluation of the designed constructs in HLA-A2 transgenic mice.
机译:对于像丙型肝炎这样的慢性病毒感染,CD8-CTL已成为重要的保护工具。因此,分离为多表位DNA或肽疫苗的优势表位代表了一种有前途的方法。但是,由于有关多表位构建和表位加工的争议性规则,在进行昂贵的转基因动物研究之前,应先对此类疫苗进行适当的设计和初步分析。在这项研究中,基于计算机抗原决定簇选择,选择了四种HLA-A2(C132,E614和N1406)和H-2(d)(E405和C132)HCV免疫显性CD8表位。表位的密码子优化核苷酸序列通过重叠延伸PCR在三个不同的顺序tandem中组装,以实现最佳的蛋白酶体切割预测,并克隆到pcDNA3.1载体中。另外,为了增强颗粒形成,还构建了另外三个包含多表位与乙型肝炎表面抗原基因(HBsAg)融合的质粒。通过RT-PCR,免疫荧光,Western印迹,ELISA和斑点印迹技术验证了所有构建体在转染的Cos-7细胞中的正确表达。此外,尽管与单独的HBsAg蛋白相比,它们融合到培养基中的分泌量较少,但仍能形成HBsAg融合多核苷酸的颗粒形成。最后,接种疫苗的小鼠的迟发型超敏反应(DTH)阳性,表明所有构建体均在体内表达,有效刺激了免疫应答,这对于HBsAg融合构建体更强。另外,通过对H-2(d)表位肽的DTH反应证明了对表位的适当加工。这些数据为进一步评估HLA-A2转基因小鼠中的构建体提供了足够的支持和价值。

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