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使用HEK-293细胞进行高密度转染可使瞬时滴度提高一倍,并消除了与聚乙烯亚胺(PEI)预先形成DNA复合物的需求。

High-density transfection with HEK-293 cells allows doubling of transient titers and removes need for a priori DNA complex formation with PEI.

作者信息

Backliwal Gaurav, Hildinger Markus, Hasija Vivek, Wurm Florian M

机构信息

Ecole Polytechnique Fédérale de Lausanne, Laboratory of Cellular Biotechnology, Institute of Bioengineering, Faculty of Life Sciences, Lausanne, Switzerland.

出版信息

Biotechnol Bioeng. 2008 Feb 15;99(3):721-7. doi: 10.1002/bit.21596.

Abstract

Recombinant proteins are of great commercial and scientific interest. Yet, most production methods in mammalian cells involve the time- and labor-consuming step of creating stable cell lines. Production methods based on transient gene expression are advantageous in terms of speed and versatility; yet, depending on the transfection protocol, transient transfection faces some bottlenecks such as a priori complex formation, limitations in terms of transfection and production media used and the need for medium exchange prior to and/or after transfection. Published protocols for transfection of suspension-adapted HEK-293 cells with polyethyleneimine have shown great promise in overcoming some of these bottlenecks, but still require a priori complex formation for optimal yields and limit the choice of transfection and production media. Here, we report successful in situ transfection of suspension-adapted HEK-293 cells with 25-kDa linear polyethyleneimine at densities up to 20 x 10(6) cells/mL in complex media followed by production at lower cell densities (1 x 10(6) cells/mL). After concentrating cells to such high densities, transfection of HEK-293 cells becomes possible in most commonly used media and is not restricted to a specific medium. Furthermore, there is no need to make transfection complexes a priori, a step that prevents inline sterile filtration of the DNA bulk for transfection, an important consideration when scaling processes up to 100 or 1,000 L. Finally, transfecting HEK-293 cells at high density in complex media is superior to existing transfection protocols and doubles yields of recombinant protein obtainable by transient gene expression.

摘要

重组蛋白具有重大的商业和科学价值。然而,哺乳动物细胞中的大多数生产方法都涉及创建稳定细胞系这一耗时费力的步骤。基于瞬时基因表达的生产方法在速度和通用性方面具有优势;然而,根据转染方案的不同,瞬时转染面临一些瓶颈,如先验复合物的形成、所用转染和生产培养基的局限性以及转染前和/或转染后更换培养基的需求。已发表的用聚乙烯亚胺转染悬浮适应型HEK - 293细胞的方案在克服其中一些瓶颈方面显示出巨大潜力,但仍需要先验复合物的形成以获得最佳产量,并限制了转染和生产培养基的选择。在此,我们报告了在复杂培养基中以高达20×10⁶个细胞/毫升的密度用25 kDa线性聚乙烯亚胺对悬浮适应型HEK - 293细胞进行原位转染,随后在较低细胞密度(1×10⁶个细胞/毫升)下进行生产。将细胞浓缩至如此高密度后,在大多数常用培养基中都可以对HEK - 293细胞进行转染,而不仅限于特定培养基。此外,无需事先制备转染复合物,这一步骤会妨碍对用于转染的大量DNA进行在线无菌过滤,这在将工艺扩大至100或1000升时是一个重要考虑因素。最后,在复杂培养基中对高密度的HEK - 293细胞进行转染优于现有转染方案,并且使通过瞬时基因表达获得的重组蛋白产量提高了一倍。

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