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Application of an Inclined Settler for Cell Culture-Based Influenza A Virus Production in Perfusion Mode

机译:倾斜沉降器在灌注模式下施用细胞培养的流感病毒产生的应用

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摘要

Influenza viruses have been successfully propagated using a variety of animal cell lines in batch, fed-batch, and perfusion culture. For suspension cells, most studies reported on membrane-based cell retention devices typically leading to an accumulation of viruses in the bioreactor in perfusion mode. Aiming at continuous virus harvesting for improved productivities, an inclined settler was evaluated for influenza A virus (IAV) production using the avian suspension cell line AGE1.CR.pIX. Inclined settlers present many advantages as they are scalable, robust, and comply with cGMP regulations, e.g., for recombinant protein manufacturing. Perfusion rates up to 3000 L/day have been reported. In our study, successful growth of AGE1.CR.pIX cells up to 50 × 106 cells/mL and a cell retention efficiency exceeding 96% were obtained with the settler cooled to room temperature. No virus retention was observed. A total of 5.4–6.5 × 1013 virions were produced while a control experiment with an ATF system equaled to 1.9 × 1013 virions. For infection at 25 × 106 cells/mL, cell-specific virus yields up to 3474 virions/cell were obtained, about 5-fold higher than for an ATF based cultivation performed as a control (723 virions/cell). Trypsin activity was shown to have a large impact on cell growth dynamics after infection following the cell retention device, especially at a cell concentration of 50 × 106 cells/mL. Further control experiments performed with an acoustic settler showed that virus production was improved with a heat exchanger of the inclined settler operated at 27°C. In summary, cell culture-based production of viruses in perfusion mode with an inclined settler and continuous harvesting can drastically increase IAV yields and possibly the yield of other viruses. To our knowledge, this is the first report to show the potential of this device for viral vaccine production.
机译:流感病毒已经成功地使用各种动物细胞系分批,喂料批次和灌注培养物繁殖。对于悬浮液,大多数研究报告了基于膜的细胞保留装置,通常导致在灌注模式中生物反应器中的病毒积累。针对改善生产力的连续病毒采伐,评价使用禽悬浮细胞系1.CR.pix的流感病毒(IAV)生产的倾斜沉降器。倾斜的定居者呈现许多优点,因为它们是可扩展的,稳健的,并且符合CGMP法规,例如,用于重组蛋白制造。据报道,灌注速率高达3000万吨/天。在我们的研究中,通过将沉降器冷却至室温,获得高达50×106个细胞/ ml的成功增长,高达50×106个细胞/ ml,并且细胞保留效率超过96%。没有观察到病毒保留。共产生5.4-6.5×1013天病毒病毒株,而ATF系统的对照实验等于1.9×1013病毒。对于25×10 6个细胞/ ml的感染,获得的细胞特异性病毒得到高达3474个病毒/细胞,比以对照(723个病毒/细胞)进行的ATF培养高约5倍。在细胞保留装置后感染后,显示胰蛋白酶活性对细胞生长动力学产生大的影响,特别是在50×106个细胞/ ml的细胞浓度下。用声学沉降器进行的进一步控制实验表明,在27℃下操作的倾斜沉降器的热交换器改善了病毒产生。总之,基于细胞培养的病毒在灌注模式中产生具有倾斜沉降器的病毒和连续收获的灌注模式可以急剧增加IAV产量,并且可能是其他病毒的产量。据我们所知,这是第一份显示该设备用于病毒疫苗生产的潜力的报告。

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