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端到端高通量微尺度瞬时蛋白生产过程的优化与自动化

Optimization and automation of an end-to-end high throughput microscale transient protein production process.

作者信息

Bos Aaron B, Luan Peng, Duque Joseph N, Reilly Dorothea, Harms Peter D, Wong Athena W

机构信息

Department of Early Stage Cell Culture, Genentech Inc., 1 DNA Way, South San Francisco, California, 94080.

Department Antibody Engineering, Genentech Inc., South San Francisco, California.

出版信息

Biotechnol Bioeng. 2015 Sep;112(9):1832-42. doi: 10.1002/bit.25601. Epub 2015 Jul 7.

Abstract

High throughput protein production from transient transfection of mammalian cells is used in multiple facets of research and development studies. Commonly used formats for these high number expressions are 12-, 24- and 96-well plates at various volumes. However there are no published examples of a 96-deep well plate microscale (1,000 μL) suspension process for mammalian transient expression. For this reason, we aimed to determine the optimal operating conditions for a high producing, microscale HEK293 transient system. We evaluated the hydrodynamic flow and measured the oxygen transfer rate (OTR) and transient protein expression for 96-deep well plates of different well geometries filled at 600-1,000 μL working volumes and agitated at various speeds and orbital diameters. Ultimately, a round well-round bottom (RR) 96-deep well plate with a working volume of 1,000 µL agitated at 1,000 RPM and a 3 mm orbital diameter yielded the highest and most consistent total transient protein production. As plate cultures are subject to evaporation, water loss from different plate seals was measured to identify an optimal plate sealing method. Finally, to enable higher capacity protein production, both expression and purification processes were automated. Functionality of this end-to-end automation workflow was demonstrated with the generation of high levels of human IgG1 antibodies (≥360 µg/mL) with reproducible productivity, product quality and ≥78% purification recovery.

摘要

通过哺乳动物细胞瞬时转染进行的高通量蛋白质生产被用于研发研究的多个方面。这些大量表达常用的形式是不同体积的12孔、24孔和96孔板。然而,目前尚无关于哺乳动物瞬时表达的96孔深孔板微尺度(1000μL)悬浮过程的公开实例。因此,我们旨在确定高产微尺度HEK293瞬时系统的最佳操作条件。我们评估了流体动力学流动,并测量了不同孔几何形状的96孔深孔板在600 - 1000μL工作体积下以不同速度和轨道直径搅拌时的氧传递速率(OTR)和瞬时蛋白质表达。最终,一个工作体积为1000μL、以1000 RPM搅拌且轨道直径为3 mm的圆形孔 - 圆形底部(RR)96孔深孔板产生了最高且最一致的总瞬时蛋白质产量。由于平板培养会受到蒸发影响,我们测量了不同平板密封方式的水分损失,以确定最佳的平板密封方法。最后,为了实现更高产量的蛋白质生产,表达和纯化过程都实现了自动化。通过产生高水平的人IgG1抗体(≥360μg/mL),且具有可重复的生产力、产品质量和≥78%的纯化回收率,证明了这种端到端自动化工作流程的功能。

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