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Construction and identification of influenza plasmid pool imparting high yields to candidate vaccine viruses in Vero cell at low temperature

机译:低温促进高产率促进候选疫苗病毒的甲型质粒池的构建及鉴定

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摘要

We generated plasmid pools for the rapid preparation of candidate vaccine strains, which could grow in the Vero cells at low temperature. Firstly, we cloned in the pHW2000 plasmid each of the eight gene segments (PB2, PB1, PA, hemagglutinin [HA], neuraminidase [NA], NS, NP, M) of two master donor strains (MDS), respectively, A/Yunnan/1/2005Vca(H3N2) and B/Yunnan/2/2005Vca(By), which had Vca phenotype (cold‐adapted phenotype in Vero cells). Secondly, the similar operation was implemented with each of the HA, NA and NP segments of circulating strains with epidemic potential (parental strains). The virus rescue techniques were employed in this study, according to the homology rate of HA segments between MDS and parental strains. Then, we harvested amount of new Vca virus strains. By transmission electron microscope, it could observe new viruses' diameter and length were from 100 to 120 nm. Importantly, these reassortant viruses could get high‐yield production in Vero cells at 25℃ from the beginning to the fourth generation, which was significantly differ from their original parental viruses. Additional, these production 16 new Vca strains could maintain enough antibody binding capacity and attenuation phenotype, which consisted with their MDS. So these plasmid pools constructed by mount of different influenza A and B virus gene fragments could present desired working performance and provide convenience and realization for more Vca reassortant virus as candidate vaccine strain if needing.
机译:我们为候选疫苗菌株的快速制备产生质粒池,其可以在低温下在VERO细胞中生长。首先,我们分别克隆在PHW2000质粒中,每个八个基因段(PB2,PB1,PA,HA,神经氨酸酶[NA],N,M)分别为两种母系菌株(MDS),a /云南/ 1/2005VCA(H3N2)和B / Yunnan / 2 / 2005VCA(by),其具有VCA表型(Vero细胞中的冷适应表型)。其次,用循环势株的HA,NA和NP段中的每一个利用流行病潜力(父母菌株)来实现类似的操作。根据MDS和父母菌株之间的HA段的同源率,在本研究中使用病毒救援技术。然后,我们收获了新的VCA病毒菌株量。通过透射电子显微镜,它可以观察到新的病毒直径和长度为100至120nm。重要的是,这些重配病毒可以从开始到第四代的25℃的Vero细胞中获得高产率,这与原始父母病毒有很大差异。另外,这些生产16个新的VCA菌株可以维持足够的抗体结合能力和衰减表型,其与其MDS组成。因此,通过不同流感A和B病毒基因片段构建的这些质粒池可以呈现所需的工作性能,并提供更高的VCA重新分化病毒,作为候选疫苗菌株,提供便利性和实现如果需要。

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