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建立一株低致瘤性的 MDCK 细胞系并研究差异分子网络。

Establishment of a low-tumorigenic MDCK cell line and study of differential molecular networks.

机构信息

College of Veterinary Medicine, Gansu Agricultural University, Lanzhou, 730030, PR China; Gansu Tech Innovation Center of Animal Cell, Biomedical Research Center, Northwest Minzu University, Lanzhou, 730030, PR China.

Gansu Tech Innovation Center of Animal Cell, Biomedical Research Center, Northwest Minzu University, Lanzhou, 730030, PR China.

出版信息

Biologicals. 2020 Nov;68:112-121. doi: 10.1016/j.biologicals.2020.07.003. Epub 2020 Sep 11.

Abstract

Influenza is an acute respiratory infection caused by the influenza virus, and vaccination against influenza is considered the best way to prevent the onset and spread. MDCK (Madin-Darby canine kidney) cells are typically used to isolate the influenza virus, however, their high tumorigenicity is the main controversy in the production of influenza vaccines. Here, MDCK-C09 and MDCK-C35 monoclonal cell lines were established, which were proven to be low in tumorigenicity. RNA-seq of MDCK-C09, MDCK-C35, and MDCK-W73 cells was performed to investigate the putative tumorigenicity mechanisms. Tumor-related molecular interaction analysis of the differentially expressed genes indicates that hub genes, such as CUL3 and EGFR, may play essential roles in tumorigenicity differences between MDCK-C (MDCK-C09 and MDCK-C35) and MDCK-W (MDCK-W73) cells. Moreover, the analysis of cell proliferation regulation-associated molecular interaction shows that downregulated JUN and MYC, for instance, mediate increased proliferation of these cells. The present study provides a new low-tumorigenic MDCK cell line and describes the potential molecular mechanism for the low tumorigenicity and high proliferation rate.

摘要

流感是由流感病毒引起的急性呼吸道感染,接种流感疫苗被认为是预防发病和传播的最佳方法。MDCK(Madin-Darby 犬肾)细胞通常用于分离流感病毒,但它们的高致瘤性是流感疫苗生产中的主要争议点。本研究建立了 MDCK-C09 和 MDCK-C35 单克隆细胞系,证明它们的致瘤性较低。对 MDCK-C09、MDCK-C35 和 MDCK-W73 细胞进行 RNA-seq 分析,以研究潜在的致瘤性机制。差异表达基因的肿瘤相关分子相互作用分析表明,CUL3 和 EGFR 等枢纽基因可能在 MDCK-C(MDCK-C09 和 MDCK-C35)和 MDCK-W(MDCK-W73)细胞之间的致瘤性差异中发挥重要作用。此外,细胞增殖调控相关分子相互作用的分析表明,下调的 JUN 和 MYC 等基因可能介导这些细胞的增殖增加。本研究提供了一种新的低致瘤性 MDCK 细胞系,并描述了低致瘤性和高增殖率的潜在分子机制。

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