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Establishment and characterization of a fin cell line from blunt snout bream, Megalobrama amblycephala

机译:钝鼻鲷鳍状鳍鳍鳍细胞系的建立和表征

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This study established and characterized a new cell line (MAF) from the fin of blunt snout bream (Megalobrama amblycephala), a freshwater fish cultivated in China. MAF cells proliferated well in medium 199 supplemented with 10 % fetal bovine serum at 28 A degrees C and have been subcultured more than 95 times in almost a year. MAF cells were revived at 90-95 % viability after 3-6 months of storage in liquid nitrogen. Karyotyping indicated that the modal chromosome number of MAF cells was 48. The MAF cell line consisted predominantly of fibroblastic and epithelial-like cells from M. amblycephala, which was confirmed by immunofluorescence and mitochondrial 12s rRNA sequencing. Viral susceptibility tests showed that MAF cells were susceptible to infection by snakehead rhabdovirus, spring viremia carp virus, and channel catfish virus, which was demonstrated by the presence of cytopathic effect, high viral titers, and PCR products. Bacterial cytotoxicity studies showed that extracellular products from Aeromonas hydrophila were toxic to MAF cells. Cu2+ was also cytotoxic to MAF cells, and the 24-h IC50 value was 144.48 mu mol/l. When MAF cells were transfected with pEGFP-N1 plasmid, bright fluorescent signals were observed, and the transfection efficiency reached up to 5 %. These results suggest that the MAF cell line may provide a valuable tool for studying virus pathogenesis, as well as cytotoxicity testing and genetic manipulation studies.
机译:这项研究建立并鉴定了一种在中国养殖的淡水鱼钝鼻鲷(Megalobrama amblycephala)的鳍上的新细胞系(MAF)。在添加了10%胎牛血清的199培养基中,MAF细胞在28 A的温度下增殖良好,并且在近一年的时间里进行了95次以上的传代培养。在液氮中存储3-6个月后,MAF细胞以90-95%的活力复活。核型分析表明,MAF细胞的模态染色体数为48。MAF细胞系主要由房室分枝杆菌的成纤维细胞和上皮样细胞组成,这已通过免疫荧光和线粒体12s rRNA测序证实。病毒敏感性测试表明,MAF细胞易受蛇头状弹状病毒,春季病毒血症鲤鱼病毒和channel鱼病毒感染,这由细胞致病作用,高病毒滴度和PCR产物证明。细菌细胞毒性研究表明,嗜水气单胞菌的细胞外产物对MAF细胞有毒性。 Cu2 +对MAF细胞也有细胞毒性,24小时IC50值为144.48μmol/ l。用pEGFP-N1质粒转染MAF细胞时,观察到明亮的荧光信号,转染效率高达5%。这些结果表明,MAF细胞系可能为研究病毒的发病机理以及细胞毒性测试和基因操作研究提供有价值的工具。

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