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首页> 外文期刊>Journal of Clinical Microbiology >Establishment and Characterization of a Madin-Darby Canine Kidney Reporter Cell Line for Influenza A Virus Assays
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Establishment and Characterization of a Madin-Darby Canine Kidney Reporter Cell Line for Influenza A Virus Assays

机译:Madin-Darby犬肾报告基因细胞系用于甲型流感病毒测定的建立和表征

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摘要

Influenza virus diagnosis has traditionally relied on virus isolation in chicken embryo or cell cultures. Many laboratories have adopted rapid molecular methods for detection of influenza viruses and discontinued routine utilization of the relatively slow viral culture methods. We describe an influenza A virus reporter cell line that contributes to more efficient viral detection in cell culture. Madin-Darby canine kidney (MDCK) cells were engineered to constitutively produce an influenza virus genome-like luciferase reporter RNA driven by the canine RNA polymerase I promoter. Induction of a high level of luciferase activity was detected in the Luc9.1 cells upon infection with various strains of influenza A virus, including 2009 H1N1 pandemic and highly pathogenic H5N1 virus. In contrast, infection with influenza B virus or human adenovirus type 5 did not induce significant levels of reporter expression. The reporter Luc9.1 cells were evaluated in neutralizing antibody assays with convalescent H3N2 ferret serum, yielding a neutralization titer comparable to that obtained by the conventional microneutralization assay, suggesting that the use of the reporter cell line might simplify neutralization assays by facilitating the establishment of infectious virus endpoints. Luc9.1 cells were also used to determine the susceptibility of influenza A viruses to a model antiviral drug. The equivalence to conventional antiviral assay results indicated that the Luc9.1 cells could provide an alternative cell-based platform for high-throughput drug discovery screens. In summary, the MDCK-derived Luc9.1 reporter cell line is highly permissive for influenza A virus replication and provides a very specific and sensitive approach for simultaneous detection and isolation of influenza A viruses as well as functional evaluation of antibodies and antiviral molecules.
机译:传统上,流感病毒诊断依赖于鸡胚或细胞培养物中的病毒分离。许多实验室已采用快速分子方法检测流感病毒,并停止了相对较慢的病毒培养方法的常规使用。我们描述了一种有助于在细胞培养中进行更有效的病毒检测的甲型流感病毒报告基因细胞系。 Madin-Darby犬肾(MDCK)细胞经过工程改造,可组成性产生由犬RNA聚合酶I启动子驱动的流感病毒基因组样荧光素酶报告基因RNA。在感染各种甲型流感病毒(包括2009 H1N1大流行和高致病性H5N1病毒)后,在Luc9.1细胞中检测到高水平的荧光素酶活性诱导。相比之下,感染B型流感病毒或5型人腺病毒不会引起明显水平的报告基因表达。在恢复性H3N2雪貂血清的中和抗体测定中评估了报告基因Luc9.1细胞,产生的中和效价与传统微中和测定相当,这表明使用报告细胞系可通过促进建立中和抗体来简化中和测定。传染性病毒端点。 Luc9.1细胞还用于确定甲型流感病毒对模型抗病毒药物的敏感性。与常规抗病毒测定结果的等效性表明,Luc9.1细胞可以为高通量药物发现筛选提供基于细胞的替代平台。总之,MDCK衍生的Luc9.1报告细胞系高度允许A型流感病毒复制,并提供了一种非常特异性和灵敏的方法,用于同时检测和分离A型流感病毒以及抗体和抗病毒分子的功能评估。

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