a Global Product Development and Supply , Bristol-Myers Squibb Company , Devens , MA , USA.
b Department of Paper and Bioprocess Engineering , SUNY-ESF , Syracuse , NY , USA.
MAbs. 2019 Jan;11(1):191-204. doi: 10.1080/19420862.2018.1525262. Epub 2018 Oct 2.
Temperature shift (TS) to a hypothermic condition has been widely used during protein production processes that use Chinese hamster ovary (CHO) cells. The effect of temperature on cell growth, metabolites, protein titer and quality depends on cell line, product, and other bioreactor conditions. Due to the large numbers of experiments, which typically last 2-3 weeks each, limited systematic TS studies have been reported with multiple shift temperatures and steps at different times. Here, we systematically studied the effect of temperature on cell culture performance for the production of two monoclonal antibodies by industrial GS and DG44 CHO cell lines. Three 2-8 day short-duration methods were developed and validated for researching the effect of many different temperatures on CHO cell culture and quality attributes. We found that minor temperature differences (1-1.5 °C) affected cell culture performance. The kinetic parameters extracted from the short duration data were subsequently used to compute and predict cell culture performance in extended duration of 10-14 days with multiple TS conditions for both CHO cell lines. These short-duration culture methods with kinetic modeling tools may be used for effective TS optimization to achieve the best profiles for cell growth, metabolites, titer and quality attributes. Although only three short-duration methods were developed with two CHO cell lines, similar short-duration methods with kinetic modeling may be applied for different hosts, including both microbial and other mammalian cells.
温度转换(TS)已广泛应用于使用中国仓鼠卵巢(CHO)细胞的蛋白质生产过程中。温度对细胞生长、代谢物、蛋白滴度和质量的影响取决于细胞系、产品和其他生物反应器条件。由于实验数量众多,每个实验通常持续 2-3 周,因此,对于使用多个转换温度和不同时间的多个步骤的有限的系统 TS 研究报告。在这里,我们系统地研究了温度对两种工业 GS 和 DG44 CHO 细胞系生产的单克隆抗体的细胞培养性能的影响。开发并验证了三种为期 2-8 天的短期方法,用于研究许多不同温度对 CHO 细胞培养和质量特性的影响。我们发现,较小的温度差异(1-1.5°C)会影响细胞培养性能。从短期数据中提取的动力学参数随后用于计算和预测两种 CHO 细胞系在 10-14 天的扩展时间内的细胞培养性能,并具有多个 TS 条件。这些具有动力学建模工具的短期培养方法可用于有效的 TS 优化,以实现细胞生长、代谢物、滴度和质量特性的最佳曲线。尽管仅使用两种 CHO 细胞系开发了三种短期方法,但具有动力学建模的类似短期方法可能适用于不同的宿主,包括微生物和其他哺乳动物细胞。