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首页> 外文期刊>Vaccine >Construction and biological characterization of artificial recombinants between a wild type flavivirus (Kunjin) and a live chimeric flavivirus vaccine (ChimeriVax-JE)
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Construction and biological characterization of artificial recombinants between a wild type flavivirus (Kunjin) and a live chimeric flavivirus vaccine (ChimeriVax-JE)

机译:野生型黄病毒(Kunjin)和活的嵌合黄病毒疫苗(ChimeriVax-JE)之间的人工重组体的构建和生物学特性

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Although the theoretical concern of genetic recombination has been raised related to the use of live attenuated flavivirus vaccines [Seligman, Gould, Lancet 2004;363:2073-5], it has little foundation [e.g., Monath TP, Kanesa-Thasan N, Guirakhoo F, Pugachev K, Almond J, Lang J, et al. Vaccine 2005;23:2956-8]. To investigate biological effects of recombination between a chimeric yellow fever (YF) 17D/Japanese encephalitis (JE) vaccine virus (ChimeriVax-JE) and a wild-type flavivirus Kunjin (KUN-cDNA), the prM-E envelope protein genes were swapped between the two viruses, resulting in new YF 17D/KUN(prM-E) and KUN/JE(prM-E) chimeras. The prM-E genes are easily exchangeable between flavivirues, and thus the exchange was expected to yield the most replication-competent chimeras, while other rationally designed recombinants would be more likely to be crippled or non-viable. The new chimeras proved highly attenuated in comparison with the KUN-cDNA parent, as judged by plaque size and growth kinetics in cell culture, low viremia in hamsters, and reduced neurovirulenceeuroinvasiveness in mice. These data provide strong experimental evidence that the potential of recombinants, should they ever emerge, to cause disease or spread (compete in nature with wild-type flaviviruses) would be indeed extremely low.
机译:尽管已经提出了与减毒活黄病毒疫苗的使用有关的基因重组的理论关注[Seligman,Gould,Lancet 2004; 363:2073-5],但它没有什么基础[例如,Monath TP,Kanesa-Thasan N,Guirakhoo F,Pugachev K,Almond J,Lang J等。疫苗2005; 23:2956-8]。为了研究嵌合黄热病(YF)17D /日本脑炎(JE)疫苗病毒(ChimeriVax-JE)和野生型黄病毒昆金(KUN-cDNA)之间重组的生物学效应,将prM-E包膜蛋白基因进行了交换两种病毒之间产生新的YF 17D / KUN(prM-E)和KUN / JE(prM-E)嵌合体。 prM-E基因很容易在黄病毒之间交换,因此,预期该交换会产生最具有复制能力的嵌合体,而其他经过合理设计的重组体则更可能瘫痪或无法生存。通过细胞培养中噬菌斑大小和生长动力学,仓鼠病毒血症低以及小鼠神经毒力/神经侵袭力降低来判断,与KUN-cDNA亲本相比,新嵌合体被高度减毒。这些数据提供了有力的实验证据,表明重组子一旦出现就会引起疾病或传播(与野生型黄病毒自然竞争)的潜力确实非常低。

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