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利用 CHO 稳定转染池进行快速蛋白质生产。

Rapid protein production using CHO stable transfection pools.

机构信息

Merck & Co., Inc., Bioprocess Research and Development, Rahway, NJ 07065, USA.

出版信息

Biotechnol Prog. 2010 Sep-Oct;26(5):1431-7. doi: 10.1002/btpr.469.

DOI:10.1002/btpr.469
PMID:20564356
Abstract

During early preclinical development of therapeutic proteins, representative materials are often required for process development, such as for pharmacokinetic/pharmacodynamic studies in animals, formulation design, and analytical assay development. To rapidly generate large amounts of representative materials, transient transfection is commonly used. Because of the typical low yields with transient transfection, especially in CHO cells, here we describe an alternative strategy using stable transfection pool technology. Using stable transfection pools, gram quantities of monoclonal antibody (Mab) can be generated within 2 months post-transfection. Expression levels for monoclonal antibodies can be achieved ranging from 100 mg/L to over 1000 mg/L. This methodology was successfully scaled up to a 200 L scale using disposable bioreactor technology for ease of rapid implementation. When fluorescence-activated cell sorting was implemented to enrich the transfection pools for high producers, the productivity could be improved by about three-fold. We also found that an optimal production time window exists to achieve the highest yield because the transfection pools were not stable and productivity generally decreased over length in culture. The introduction of Universal chromatin-opening elements elements into the expression vectors led to significant productivity improvement. The glycan distribution of the Mab product generated from the stable transfection pools was comparable to that from the clonal stable cell lines.

摘要

在治疗性蛋白的早期临床前开发阶段,通常需要代表性材料用于工艺开发,例如动物的药代动力学/药效学研究、制剂设计和分析检测方法开发。为了快速生成大量代表性材料,通常会使用瞬时转染。由于瞬时转染的产率通常较低,特别是在 CHO 细胞中,因此我们在这里描述了一种使用稳定转染池技术的替代策略。使用稳定转染池技术,在转染后 2 个月内可以产生克级数量的单克隆抗体(Mab)。单克隆抗体的表达水平可以达到 100mg/L 至 1000mg/L 以上。该方法成功地使用一次性生物反应器技术扩展到 200L 规模,便于快速实施。当实施荧光激活细胞分选来富集高表达转染池时,生产力可以提高约三倍。我们还发现存在最佳的生产时间窗口以获得最高产量,因为转染池不稳定,并且随着培养时间的延长,生产力通常会下降。在表达载体中引入通用染色质开放元件导致生产力显著提高。从稳定转染池产生的 Mab 产物的聚糖分布与从克隆稳定细胞系产生的产物相似。

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Rapid protein production using CHO stable transfection pools.利用 CHO 稳定转染池进行快速蛋白质生产。
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