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在WAVE生物反应器中对CHO细胞进行无血清悬浮大规模瞬时转染。

Serum-free suspension large-scale transient transfection of CHO cells in WAVE bioreactors.

作者信息

Haldankar Raj, Li Danqing, Saremi Zane, Baikalov Claudia, Deshpande Rohini

机构信息

Department of Protein Sciences, Amgen, Inc., Thousand Oaks, CA, USA.

出版信息

Mol Biotechnol. 2006 Oct;34(2):191-9. doi: 10.1385/mb:34:2:191.

Abstract

Here, we report the development of a large-scale transient expression platform utilizing Chinese hamster ovary (CHO) cells. The majority of recombinant proteins and antibodies that are produced for preclinical models and clinical trials are expressed in stably transfected CHO cells. A protocol for transient transfection of CHO cells that is rapid, reproducible, and cost-effective would therefore streamline the process from research to development and help avoid any potential host species induced variation in the molecule of interest. CHO cells were adapted to grow in serum-free suspension conditions in spinner flask cultures in a proprietary in-house developed growth medium. In developing this transient transfection protocol, the parameters optimized included the transfection reagent of choice, the cell density at the time of transfection, the plasmid DNA concentration, and the transfection reagent concentration. Using this optimized protocol, we have expressed recombinant proteins, including antibodies, at an expression level of up to 9.4 mg/L. We also report transient transfections from 500 mL working volume (w.v.) up to 20 L w.v. in a WAVE bioreactor. Using this optimized protocol, it is possible to rapidly (within 10 d) produce up to 100 mg of recombinant protein for further study.

摘要

在此,我们报告了一种利用中国仓鼠卵巢(CHO)细胞的大规模瞬时表达平台的开发情况。用于临床前模型和临床试验的大多数重组蛋白和抗体都是在稳定转染的CHO细胞中表达的。因此,一种快速、可重复且具有成本效益的CHO细胞瞬时转染方案将简化从研究到开发的过程,并有助于避免任何潜在的宿主物种引起的目标分子变异。CHO细胞经适应性培养后,可在内部自行研发的专用生长培养基中,于转瓶培养的无血清悬浮条件下生长。在制定此瞬时转染方案时,优化的参数包括所选的转染试剂、转染时的细胞密度、质粒DNA浓度和转染试剂浓度。使用此优化方案,我们已表达出重组蛋白,包括抗体,表达水平高达9.4 mg/L。我们还报告了在WAVE生物反应器中从500 mL工作体积(w.v.)到20 L w.v.的瞬时转染情况。使用此优化方案,有可能快速(在10天内)生产多达100 mg的重组蛋白以供进一步研究。

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