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利用人工染色体表达技术在中华仓鼠卵巢细胞中表达 IgG1 的补料分批生物反应器性能和细胞系稳定性评估。

Fed-batch bioreactor performance and cell line stability evaluation of the artificial chromosome expression technology expressing an IgG1 in Chinese hamster ovary cells.

机构信息

BioTherapeutics Pharmaceutical Sciences, Pfizer Inc., 700 Chesterfield Parkway West, Chesterfield, MO 63017, USA.

出版信息

Biotechnol Prog. 2011 Jan-Feb;27(1):201-8. doi: 10.1002/btpr.505. Epub 2010 Nov 23.

Abstract

The artificial chromosome expression (ACE) technology system uses an engineered artificial chromosome containing multiple site-specific recombination acceptor sites for the rapid and efficient construction of stable cell lines. The construction of Chinese hamster ovary(CHO) cell lines expressing an IgG1 monoclonal antibody (MAb) using the ACE system has been previously described (Kennard et al., Biotechnol Bioeng. 2009;104:540-553). To further demonstrate the manufacturing feasibility of the ACE system, four CHO cell lines expressing the human IgG1 MAb 4A1 were evaluated in batch and fed-batch shake flasks and in a 2-L fed-batch bioreactor. The batch shake flasks achieved titers between 0.7 and 1.1 g/L, whereas the fed-batch shake flask process improved titers to 2.5–3.0 g/L. The lead 4A1 ACE cell line achieved titers of 4.0 g/L with an average specific productivity of 40 pg/(cell day) when cultured in a non optimized 2-L fed-batch bioreactor using a completely chemically defined process. Generational stability characterization of the lead 4A1-expressing cell line demonstrated that the cell line was stable for up to 75 days in culture. Product quality attributes of the 4A1 MAb produced by the ACE system during the stability evaluation period were unchanged and also comparable to existing expression technologies such as the CHO-dhfr system. The results of this evaluation demonstrate that a clonal, stable MAb-expressing CHO cell line can be produced using ACE technology that performs competitively using a chemically defined fed-batch bioreactor process with comparable product quality attributes to cell lines generated by existing technologies.

摘要

人工染色体表达(ACE)技术系统使用包含多个位点特异性重组接受位点的工程人工染色体,用于快速高效地构建稳定的细胞系。先前已经描述了使用 ACE 系统构建表达 IgG1 单克隆抗体(MAb)的中国仓鼠卵巢(CHO)细胞系(Kennard 等人,Biotechnol Bioeng. 2009;104:540-553)。为了进一步证明 ACE 系统的制造可行性,在分批和补料分批摇瓶以及 2-L 补料分批生物反应器中评估了表达人 IgG1 MAb 4A1 的四个 CHO 细胞系。分批摇瓶达到了 0.7 至 1.1 g/L 的滴度,而补料分批摇瓶工艺将滴度提高到 2.5-3.0 g/L。在使用完全化学成分定义的过程在非优化的 2-L 补料分批生物反应器中培养时,领先的 4A1 ACE 细胞系达到了 4.0 g/L 的滴度,平均比生产率为 40 pg/(细胞天)。在培养中,表达 4A1 的先导细胞系的世代稳定性特征表明,该细胞系在培养中稳定长达 75 天。在稳定性评估期间,通过 ACE 系统产生的 4A1 MAb 的产品质量属性保持不变,并且与现有表达技术(如 CHO-dhfr 系统)相当。该评估的结果表明,使用 ACE 技术可以生产出克隆的、稳定的表达 MAb 的 CHO 细胞系,该技术使用化学成分定义的补料分批生物反应器工艺进行竞争,具有与现有技术产生的细胞系相当的产品质量属性。

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