Sun Xiangming, Hia Hui Ching, Goh Peen Ern, Yap Miranda G S
Bioprocessing Technology Institute, 20 Biopolis Way, Centros 138668, Singapore.
Biotechnol Bioeng. 2008 Jan 1;99(1):108-16. doi: 10.1002/bit.21537.
Large-scale transient gene expression (TGE) in mammalian cells is an attractive method to rapidly produce recombinant proteins for pre-clinical studies, with some processes reported to reach 100 L. However, the yield remains low, hardly over 20 mg protein/L, mainly because the current TGEs have been performed at low cell density (approximately 5 x 10(5) cells/mL). In this study, the strategy to improve TGE focuses on facilitating transfection at high cell density. A high-density perfusion culture of 293 EBNA1 cells was established in 2-L bioreactor using Freestyle 293 expression medium (Invitrogen, Singapore) to grow the cells for transfection. Transfection was then carried out at 1 x 10(7) cells/mL using polyethylenimine (PEI) as DNA carrier, at the optimized conditions of 6 microg DNA/10(7) cells and 1:3 DNA to PEI mass ratio. During the post-transfection phase, 80.8 mg/L of the model protein, EPO was obtained at day 5.5 post-transfection (130 mg total EPO production) using a fed-batch culture mode. In comparison, perfusion cultures using an enriched SFM II medium resulted in a longer post-transfection production phase (8 days), and 227 mg of EPO was produced in 10.7 L medium, showing that high-density TGE enables the production of several hundreds of milligrams of protein in a 2 L bioreactor. In addition, a protocol for economical plasmid preparation based on anion exchange was also established to satisfy TGE's demand in terms of quality and quantity. To the best of our knowledge, this is the first report of transient transfections at a high cell density of up to 1 x 10(7) cells/mL.
哺乳动物细胞中的大规模瞬时基因表达(TGE)是一种快速生产用于临床前研究的重组蛋白的有吸引力的方法,据报道有些工艺规模可达100升。然而,产量仍然很低,几乎不超过20毫克蛋白质/升,主要是因为目前的TGE是在低细胞密度(约5×10⁵个细胞/毫升)下进行的。在本研究中,提高TGE的策略集中在促进高细胞密度下的转染。使用Freestyle 293表达培养基(英杰生命技术公司,新加坡)在2升生物反应器中建立了293 EBNA1细胞的高密度灌注培养,以培养用于转染的细胞。然后使用聚乙烯亚胺(PEI)作为DNA载体,在1×10⁷个细胞/毫升的密度下进行转染,优化条件为6微克DNA/10⁷个细胞以及DNA与PEI的质量比为1:3。在转染后阶段,采用补料分批培养模式,在转染后第5.5天获得了80.8毫克/升的模型蛋白促红细胞生成素(EPO)(EPO总产量为130毫克)。相比之下,使用富集的SFM II培养基进行灌注培养导致转染后生产阶段更长(8天),在10.7升培养基中产生了227毫克EPO,表明高密度TGE能够在2升生物反应器中生产数百毫克蛋白质。此外,还建立了一种基于阴离子交换的经济的质粒制备方案,以满足TGE在质量和数量方面的需求。据我们所知,这是首次关于在高达1×10⁷个细胞/毫升的高细胞密度下进行瞬时转染的报道。