首页> 外文期刊>Journal of Insect Science >Serumfree culture of the suspension cell line QB-Tn9-4s of the cabbage looper, Trichoplusia ni, is highly productive for virus replication and recombinant protein expression
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Serumfree culture of the suspension cell line QB-Tn9-4s of the cabbage looper, Trichoplusia ni, is highly productive for virus replication and recombinant protein expression

机译:圆白菜弯孢菌Trichoplusia ni的悬浮细胞系QB-Tn9-4s的无血清培养对于病毒复制和重组蛋白表达具有很高的生产力

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Serumfree cultures of insect cells play an important role in the fields of protein engineering, medicine, and biology. In this paper, the suspension cell line QB-Tn9-4s of Trichoplusia ni (Hübner) (Lepidoptera: Noctuidae) was successfully adapted to serumfree Sf-900 III medium and passaged for 52 generations. The adapted QB-Tn9-4s cells grew faster. Their population doubling time shortened from 27.4 hr in serum-containing medium to 24.1 hr, and their maximal density increased by 1.83-fold, reaching 3.50 ×106cells/mL in serumfree culture in T-flasks. The cells readily adapted to spinner culture, with maximum cell density of 4.40 × 106cells/mL in a spinner flask. Although the infection rate of Autographa californica multiple nucleopolyhedrovirus and production of occlusion bodies (OBs) of the adapted QB-Tn9-4s cells were 91.0% and 85.4 OBs/cell, respectively, similar to those of QB-Tn9-4s cells cultured in serum-containing medium and control BTI-Tn5B1-4 cells, their budded virus titer was 4.97 ×107TCID50/mL, significantly higher than those of the latter two. In addition, the expression levels of β-galactosidase at six days postinfection and secreted alkaline phosphatase at seven days postinfection in the adapted QB-Tn9-4s cells reached 2.98 ± 0.15×104IU/mL and 3.34 ± 0.13 IU/mL, respectively, significantly higher than those of QB-Tn9-4s and control BTI-Tn5B1-4 cultured in serum-containing media. The above findings establish a foundation for industrial production of virus and recombinant proteins in QB-Tn9-4s serumfree culture.
机译:昆虫细胞的无血清培养在蛋白质工程,医学和生物学领域中起着重要作用。在本文中,Trichoplusia ni(Hübner)(鳞翅目:夜蛾科)的悬浮细胞系QB-Tn9-4s成功地适应了无血清Sf-900 III培养基,并传代了52代。适应的QB-Tn9-4s细胞生长更快。它们的倍增时间从含血清的培养基中的27.4小时缩短到24.1小时,最大密度增加了1.83倍,在T瓶中的无血清培养中达到了3.50×10 6 细胞/ mL。细胞易于适应旋转培养,在旋转瓶中的最大细胞密度为4.40×10 6 细胞/ mL。尽管适应的QB-Tn9-4s细胞的加州白粉虱多核多角体病毒的感染率和闭塞体(OB)的产生分别为91.0%和85.4 OBs /细胞,与血清中培养的QB-Tn9-4s细胞的相似含有BTI-Tn5B1-4细胞和对照的BTI-Tn5B1-4细胞,其萌芽病毒滴度为4.97×10 7 TCID50 / mL,明显高于后两者。此外,在适应感染的QB-Tn9-4s细胞中,感染后第6天β-半乳糖苷酶的表达水平和感染后第7天分泌的碱性磷酸酶的表达水平分别为2.98±0.15×10 4 IU / mL和3.34。 ±0.13 IU / mL分别显着高于在含血清的培养基中培养的QB-Tn9-4s和对照BTI-Tn5B1-4。上述发现为在QB-Tn9-4s无血清培养中工业生产病毒和重组蛋白奠定了基础。

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