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High-titer adenovirus vector production in 293S cell perfusion culture

机译:293S细胞灌注培养中高滴度腺病毒载体的产生

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Human 293S cells culture for recombinant adenovirus production is traditionally carried out in batch at a maximum of 6 x 10(5) cells/mL. A previous report demonstrated that fed-batch, applied to the adenovirus/293S cells system, improves the volumetric production of viral proteins by increasing the cell density at which cells can be infected, up to 2 x 10(6) cells/mL, without reducing the per-cell yield of product. To increase this cell density limit, the adenovirus production was performed in a perfusion system where the cells were separated by means of a tangential flow filtration device. 293S cell growth to 14 x 10(6) cells/mL was achieved in 10 days, at a medium renewal rate of 1 volume of medium per reactor volume and day (VVD). For adenovirus production, three 293S cell cultures were perfused at 1 VVD in parallel and infected at an average density of 8 x 106 cells/mL. One of the cultures was set at 37 degreesC and the two others at 35 degreesC. After a rapid initial cell loss, the average cell density stabilized at 5.75 x 10(6) cells/mL, 12 h postinfection, which was 8 times higher than the cell density in the batch control. This allowed the production of 3.2 x 10(9) infectious viral particles/mL (IVP/mL) at 37 degreesC and 7.8 x 10(9) IVP/mL at 35 degreesC, this last result being 5.5 times higher than the control. To our knowledge, this nonconcentrated titer is the highest value that has ever been published for adenovirus vector production. These observations lead to the conclusion that perfusion is an efficient tool to maintain, at high cell density, a specific production rate level sufficient to increase significantly the adenovirus volumetric production. Furthermore, it shows that perfusion at 35 degreesC can improve viral titer by 2.4-fold compared to 37 degreesC, in accordance with a previous study on adenovirus batch production.
机译:传统上,用于重组腺病毒生产的人293S细胞培养通常以最大6 x 10(5)细胞/ mL的批次进行。先前的报道表明,应用于腺病毒/ 293S细胞系统的补料分批通过增加可感染细胞的细胞密度来提高病毒蛋白的体积产量,最高可达2 x 10(6)细胞/ mL,而没有降低产品的每单元产量。为了增加该细胞密度极限,在灌注系统中进行腺病毒生产,在该系统中通过切向流过滤装置分离细胞。 293S细胞在10天内达到了14 x 10(6)个细胞/ mL的生长,其培养基更新速率为每反应器体积和天1体积的培养基(VVD)。对于腺病毒的生产,以1 VVD并行灌注3个293S细胞培养物,并以8 x 106细胞/ mL的平均密度感染。一种文化设置在37摄氏度,另两种文化设置在35摄氏度。快速的初始细胞损失后,感染后12 h,平均细胞密度稳定在5.75 x 10(6)个细胞/ mL,这是批次控制中细胞密度的8倍。这使得在37摄氏度下可产生3.2 x 10(9)感染性病毒颗粒/毫升(IVP / mL),在35摄氏度下可产生7.8 x 10(9)IVP / mL,这比对照高5.5倍。据我们所知,这种非浓缩滴度是腺病毒载体生产所公开的最高值。这些观察结果得出结论,灌注是在高细胞密度下维持足以显着增加腺病毒体积产量的特定生产率水平的有效工具。此外,根据先前关于腺病毒批生产的研究,表明与35℃相比,在35℃的灌注可以提高病毒滴度2.4倍。

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