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首页> 外文期刊>Biotechnology Progress >Integrating a 250 mL-Spinner Flask with Other Stirred Bench-Scale Cell Culture Devices: A Mass Transfer Perspective
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Integrating a 250 mL-Spinner Flask with Other Stirred Bench-Scale Cell Culture Devices: A Mass Transfer Perspective

机译:将250 mL旋转烧瓶与其他搅拌式台式细胞培养设备整合:传质

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The bioprocess development cycle is a complex task that requires a complete understanding of the engineering of the process (e.g., mass transfer, mixing, CO2 removal, process monitoring, and control) and its affect on cell biology and product quality. Despite their widespread use in bioprocess development, spinner flasks generally lack engineering characterization of critical physical parameters such as k_La, P/V, or mixing time. In this study, mass transfer characterization of a 250-mL spinner flask using optical patch-based sensors is presented. The results quantitatively show the effect of the impeller type, liquid filling volume, and agitation speed on the volumetric mass transfer coefficient (k_La) in a 250-mL spinner flask, and how they can be manipulated to match mass transfer capability at large culture devices. Thus, process understanding in spinner flasks can be improved, and these devices can be seamlessly integrated in a rational scale-up strategy from cell thawing to bench-scale bioreactors (and beyond) in biomanufacturing.
机译:生物过程开发周期是一项复杂的任务,需要对过程工程(例如传质,混合,去除二氧化碳,过程监控和控制)及其对细胞生物学和产品质量的影响有完整的了解。尽管其在生物工艺开发中得到了广泛使用,但旋转烧瓶通常缺乏关键物理参数(如k_La,P / V或混合时间)的工程表征。在这项研究中,提出了使用基于光学贴片的传感器对250 mL旋转瓶进行传质表征的方法。结果定量显示了叶轮类型,液体填充量和搅拌速度对250 mL旋转烧瓶中体积传质系数(k_La)的影响,以及如何在大型培养设备上对它们进行操纵以匹配传质能力。因此,可以改善旋转烧瓶中的工艺知识,并且可以将这些设备无缝集成到合理的放大策略中,从细胞解冻到生物制造中的台式规模的生物反应器(及以后)。

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