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Hydrocyclones as cell retention device for CHO perfusion processes in single-use bioreactors

机译:氢旋流器作为COP灌注过程的细胞保留装置,单用生物反应器

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In this study, a hydrocyclone (HC) especially designed for mammalian cell separation was applied for the separation of Chinese hamster ovary cells. The effect of key features on the separation efficiency, such as type of pumphead in the peristaltic feed pump, use of an auxiliary pump to control the perfusate flow rate, and tubing size in the recirculation loop were evaluated in batch separation tests. Based on these preliminary batch tests, the HC was then integrated to 50-L disposable bioreactor bags. Three perfusion runs were performed, including one where perfusion was started from a low-viability late fed-batch culture, and viability was restored. The successive runs allowed optimization of the HC-bag configuration, and cultivations with 20-25 days duration at cell concentrations up to 50 x 10(6)cells/ml were performed. Separation efficiencies up to 96% were achieved at pressure drops up to 2.5 bar, with no issues of product retention. To our knowledge, this is the first report in literature of high cell densities obtained with a HC integrated to a disposable perfusion bioreactor.
机译:在该研究中,尤其设计用于哺乳动物细胞分离的水力旋流器(HC)用于分离中国仓鼠卵巢细胞。在批量分离试验中评估了关键特征对分离效率的影响,例如蠕动进料泵中的散热泵的类型,以控制灌注流速,以及再循环回路中的管尺寸。基于这些初步批次测试,然后将HC集成到50-L一次性生物反应器袋中。进行三次灌注运行,包括从低生存性晚期补料分批培养开始灌注的情况下,并且恢复活力。连续运行允许优化HC袋配置,并进行高达50×10(6)个细胞/ mL的细胞浓度为20-25天持续时间的培养。高达96%的分离效率在高达2.5巴的压力下降,没有产品保留问题。据我们所知,这是用整合到一次性灌注生物反应器的HC获得的高细胞密度文献中的第一个报告。

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