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A case study in converting disposable process scouting devices into disposable bioreactors as a future bioprocessing tool

机译:将一次性过程筛选装置转换为一次性生物反应器作为未来生物处理工具的案例研究

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摘要

In this study, we perform mass transfer characterization (k _La) on a novel mechanically driven/stirred Process Scouting Device, PSD, (SuperSpinner D 1000?, SSD) and demonstrate that this novel device can be viewed as disposable bioreactor. Using patch-based optical sensors, we were able to monitor critical cell culture environmental conditions such as dissolved oxygen (DO) and pH in SSD for comparison to a 1L standard spinner (SS) flask. We also coupled these mass transfer studies with mixing time studies where we observed relative high mixing times (5.2min) that are typically observed in production scale bioreactors. Decreasing the mixing time 3.5-fold resulted in 30% increase in k La (from 2.3 to 3.0h ~(-1)) and minimum DO level increased from 0% to 20% for our model hybridoma cell line. Finally, maximum viable cell density and protein titer stayed within ±20% of historical data, from our standard 5L stirred bioreactor (Biostat?) operated under active DO control.
机译:在这项研究中,我们在新型机械驱动/搅拌过程侦察装置PSD(SuperSpinner D 1000?,SSD)上进行传质表征(k _La),并证明该新型装置可被视为一次性生物反应器。使用基于贴片的光学传感器,我们能够监视关键的细胞培养环境条件,例如SSD中的溶解氧(DO)和pH,以便与1L标准旋转瓶(SS)进行比较。我们还将这些传质研究与混合时间研究结合在一起,在该研究中,我们观察到了相对较高的混合时间(5.2分钟),这通常在生产规模的生物反应器中观察到。将混合时间减少3.5倍可导致我们的模型杂交瘤细胞系的k La增加30%(从2.3h至(-1)从3.0h〜(-1)),最低DO含量从0%增加至20%。最后,根据我们在主动DO控制下运行的标准5L搅拌生物反应器(Biostat?),最大活细胞密度和蛋白滴度保持在历史数据的±20%以内。

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