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首页> 外文期刊>Biotechnology Progress >Performance of High Intensity Fed-Batch Mammalian Cell Cultures in Disposable Bioreactor Systems
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Performance of High Intensity Fed-Batch Mammalian Cell Cultures in Disposable Bioreactor Systems

机译:高强度补料分批哺乳动物细胞在一次性生物反应器系统中的性能

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The adoption of disposable bioreactor technology as an alternate to traditional nondispos-able technology is gaining momentum in the biotechnology industry. Evaluation of current disposable bioreactors systems to sustain high intensity fed-batch mammalian cell culture processes needs to be explored. In this study, an assessment was performed comparing single-use bioreactors (SUBs) systems of 50-, 250-, and 1,000-L operating scales with traditional stainless steel (SS) and glass vessels using four distinct mammalian cell culture processes. This comparison focuses on expansion and production stage performance. The SUB performance was evaluated based on three main areas: operability, process scalability, and process performance. The process performance and operability aspects were assessed over time and product quality performance was compared at the day of harvest. Expansion stage results showed disposable bioreactors mirror traditional bioreactors in terms of cellular growth and metabolism. Set-up and disposal times were dramatically reduced using the SUB systems when compared with traditional systems. Production stage runs for both Chinese hamster ovary and NSO cell lines in the SUB system were able to model SS bioreactors runs at 100-, 200-, 2,000-, and 15,000-L scales. A single 1,000-L SUB run applying a high intensity fed-batch process was able to generate 7.5 kg of antibody with comparable product quality.
机译:在生物技术行业中,采用一次性生物反应器技术替代传统的非一次性技术正在蓬勃发展。需要探索对当前的一次性生物反应器系统维持高强度补料分批哺乳动物细胞培养过程的评估。在这项研究中,进行了评估,比较了使用四种不同的哺乳动物细胞培养工艺的50、250和1,000升操作规模的一次性生物反应器(SUBs)系统与传统的不锈钢(SS)和玻璃容器。该比较着重于扩展和生产阶段的性能。 SUB性能的评估基于以下三个主要方面:可操作性,过程可伸缩性和过程性能。随着时间的流逝,对过程性能和可操作性方面进行了评估,并在收获之日对产品质量性能进行了比较。扩展阶段的结果表明,一次性生物反应器在细胞生长和代谢方面与传统生物反应器相似。与传统系统相比,使用SUB系统可大大减少设置和处置时间。 SUB系统中中国仓鼠卵巢和NSO细胞系的生产阶段运行能够模拟SS生物反应器在100、200、2,000和15,000 L规模下运行。使用高强度补料分批工艺的单个1,000 L SUB运行能够产生7.5 kg抗体,具有可比的产品质量。

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