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首页> 外文期刊>Microbiology and Immunology >Persistent replication of a hepatitis C virus genotype 1b-based chimeric clone carrying E1, E2 and p6 regions from GB virus B in a New World monkey
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Persistent replication of a hepatitis C virus genotype 1b-based chimeric clone carrying E1, E2 and p6 regions from GB virus B in a New World monkey

机译:在新世界猴中持久复制来自丙型肝炎病毒的携带丙型肝炎病毒基因型1b的带有E1,E2和p6区的嵌合克隆

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The development of effective hepatitis C virus (HCV) vaccines is essential for the prevention of further HCV dissemination, especially in developing countries. Therefore the aim of this study is to establish a feasible and immunocompetent surrogate animal model of HCV infection that will help in evaluation of the protective efficacy of newly developing HCV vaccine candidates. To circumvent the narrow host range of HCV, an HCV genotype 1b-based chimeric clone carrying E1, E2 and p6 regions from GB virus B (GBV-B), which is closely related to HCV, was generated. The chimera between HCV and GBV-B, named HCV/G, replicated more efficiently as compared with the HCV clone in primary marmoset hepatocytes. Furthermore, it was found that the chimera persistently replicated in a tamarin for more than 2 years after intrahepatic inoculation of the chimeric RNA. Although relatively low (200 copies/mL), the viral RNA loads in plasma were detectable intermittently during the observation period. Of note, the chimeric RNA was found in the pellet fraction obtained by ultracentrifugation of the plasma at 73 weeks, indicating production of the chimeric virus. Our results will help establish a novel non-human primate model for HCV infection on the basis of the HCV/G chimera in the major framework of the HCV genome.
机译:开发有效的丙型肝炎疫苗对于防止进一步传播HCV至关重要,特别是在发展中国家。因此,本研究的目的是建立一种可行且具有免疫能力的HCV感染替代动物模型,这将有助于评估新开发的HCV候选疫苗的保护功效。为了规避HCV的狭窄宿主范围,产生了一种HCV基因型基于1b的嵌合克隆,其携带来自与HCV密切相关的GB病毒B(GBV-B)的E1,E2和p6区。 HCV和GBV-B之间的嵌合体,称为HCV / G,与在mar猴肝细胞中的HCV克隆相比,复制效率更高。此外,发现嵌合体RNA的肝内接种后,嵌合体在罗望子树中持续复制超过2年。尽管相对较低(<200拷贝/ mL),但在观察期内可间歇性检测血浆中病毒RNA的量。值得注意的是,在73周血浆超速离心获得的沉淀级分中发现了嵌合RNA,表明产生了嵌合病毒。我们的研究结果将有助于在HCV基因组主要框架内,基于HCV / G嵌合体,为HCV感染建立一种新型的非人类灵长类动物模型。

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