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首页> 外文期刊>Biotechnology Journal: Healthcare,Nutrition,Technology >A single-use purification process for the production of a monoclonal antibody produced in a PER.C6 human cell line
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A single-use purification process for the production of a monoclonal antibody produced in a PER.C6 human cell line

机译:一种一次性纯化方法,用于生产在PER.C6人细胞系中生产的单克隆抗体

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摘要

Advances in single-use technologies can enable greater speed, flexibility, and a smaller footprint for multi-product production facilities, such as at a contract manufacturer. Recent efforts in the area of cell line and media optimization have resulted in bioreactor productivities that exceed 8 g/L in fed-batch processes or 25 g/L in high-density cell culture processes. In combination with the development of single-use stirred tank bioreactors with larger working volumes, these intensified upstream processes can now be fit into a single-use manufacturing setting. Contrary to these upstream advances, downstream single-use technologies have been slower to follow, mostly limited by low capacity, high cost, and poor scalability. In this study we describe a downstream process based solely on single-use technologies that meets the challenges posed by expression of a mAb (IgC1) in a high-density suspension culture of PER.C6~R cells. The cell culture harvest was clarified by enhanced cell settling (ECS~(TM)) and depth filtration. Precipitation was used for crude purification of the mAb. A high capacity chromatographic membrane was then used in bind/elute mode, followed by two membranes in flow-through (FT) mode for polishing. A proof of concept of the entire disposable process was completed for two different scales of the purification train.
机译:一次性技术的进步可以为合同制造商等多产品生产设施提供更高的速度,灵活性和更小的占地面积。在细胞系和培养基优化领域的最新努力已使生物反应器的生产率在分批补料工艺中超过8 g / L,在高密度细胞培养工艺中超过25 g / L。与开发具有更大工作量的一次性搅拌罐式生物反应器相结合,这些强化的上游工艺现在可以适应一次性生产环境。与上游发展相反,下游一次性技术的采用速度较慢,主要受容量低,成本高和可伸缩性差的限制。在这项研究中,我们描述了仅基于一次性技术的下游工艺,该工艺可以应对在PER.C6〜R细胞的高密度悬浮培养物中mAb(IgC1)的表达所带来的挑战。细胞培养物的收获通过增强细胞沉降(ECS TM)和深度过滤来澄清。沉淀用于mAb的粗纯化。然后以结合/洗脱模式使用高容量色谱膜,然后以流通(FT)模式使用两个膜进行抛光。对于两种不同规模的净化系列,完成了整个一次性过程的概念验证。

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