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Characterizing the preparation of a concentrated nutrient feed solution for a large-scale cell culture process

机译:表征用于大规模细胞培养方法的浓缩营养液的制备

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Fed-batch mammalian cell culture processes frequently employ concentrated and complex media and feeds during the production phase. Though significant efforts are undertaken to characterize the large-scale bioreactor with respect to its control parameters, similar efforts are not commonly undertaken to characterize the feed preparation process. During the characterization of a commercial cell culture process using elements of Quality-by-Design (QbD) principles, we identified the complex nutrient feed solution preparation as an important step and temperature, mixing time, and mixing intensity were identified as factors impacting this unit operation via a systematic risk assessment. To best simulate the large-scale feed preparation process, a 31, model was developed to determine the impact of the feed preparation conditions. Feed preparation parameters were characterized and the solutions generated were analyzed using various analytical methods, a filterability assessment, and cell culture use tests that included evaluation of culture performance and relevant product quality attributes. Based on the data from the characterization studies, appropriate ranges for an allowable multivariate operating space for large scale feed preparation were determined. These studies demonstrated how the preparation of complex nutrient feed solutions could be modeled and characterized to ensure the success of a cell culture manufacturing campaign. (C) 2018 Elsevier E.V. All rights reserved.
机译:奶油批次哺乳动物细胞培养方法经常使用浓缩和复杂的培养基和在生产阶段进料。尽管进行了大量努力,但是在对其对照参数方面表征大型生物反应器,但不一致的努力不常见以表征饲料制备过程。在使用质量逐型(QBD)原理的元素的商业细胞培养过程的表征期间,我们将复杂的营养料溶液制剂作为重要的步骤和温度,混合时间和混合强度被鉴定为影响本机的因素通过系统风险评估进行操作。为了最佳模拟大规模进料制备过程,开发了31,模型以确定进料制剂条件的影响。表征了进料制剂参数,并使用各种分析方法,过滤性评估和细胞培养使用试验来分析产生的溶液,包括培养性能和相关产品质量属性的评估。基于来自表征研究的数据,确定了用于大规模进料制剂的允许多变量操作空间的适当范围。这些研究证明了如何建模复杂营养饲料溶液的制备,并确保细胞培养制造业的成功。 (c)2018 Elsevier E.v.版权所有。

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