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Development of a versatile high-temperature short-time (HTST) pasteurization device for small-scale processing of cell culture medium formulations

机译:开发多功能高温短时(HTST)巴氏杀菌装置,用于细胞培养基制剂的小规模加工

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The compatibility of CHO cell culture medium formulations with all stages of the bioprocess must be evaluated through small-scale studies prior to scale-up for commercial manufacturing operations. Here, we describe the development of a bespoke small-scale device for assessing the compatibility of culture media with a widely implemented upstream viral clearance strategy, high-temperature short-time (HTST) treatment. The thermal stability of undefined medium formulations supplemented with soy hydrolysates was evaluated upon variations in critical HTST processing parameters, namely, holding times and temperatures. Prolonged holding times of 43 s at temperatures of 110 A degrees C did not adversely impact medium quality while significant degradation was observed upon treatment at elevated temperatures (200 A degrees C) for shorter time periods (11 s). The performance of the device was benchmarked against a commercially available mini-pilot HTST system upon treatment of identical formulations on both platforms. Processed medium samples were analyzed by untargeted LC-MS/MS for compositional profiling followed by chemometric evaluation, which confirmed the observed degradation effects caused by elevated holding temperatures but revealed comparable performance of our developed device with the commercial mini-pilot setup. The developed device can assist medium optimization activities by reducing volume requirements relative to commercially available mini-pilot instrumentation and by facilitating fast throughput evaluation of heat-induced effects on multiple medium lots.
机译:CHO细胞培养基配方与生物过程所有阶段的相容性必须通过在扩大商业制造操作之前通过小规模研究进行评估。在这里,我们描述了用于评估培养培养基与广泛实施的上游病毒清除策略,高温短时(HTST)治疗的培养基的兼容性的开发。在临界HTST处理参数的变化时评价补充有大豆水解产物的未定义培养基的热稳定性,即保持时间和温度。在110℃的温度下延长43秒的延长持续时间对培养基质量不产生不利影响,而在升高的温度(200℃)下进行显着降解以进行更短的时间(11秒)。在处理两个平台上的相同制剂时,该装置的性能与商业上可获得的迷你导频HTST系统进行了基准。通过未标准的LC-MS / MS分析加工的培养基样品,用于组成分析,然后通过化学计量评估,这证实了由升高的保持温度造成的观察到的降解效果,但揭示了我们开发装置与商业迷你试验装置的相当性能。开发的装置可以通过降低相对于商业上可获得的迷你试验仪器来帮助中等优化活动,并通过促进对多种中等地段的热诱导效应的快速通量评估。

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