Unidad de Bioprocesos, Departamento de Biología Molecular y Biotecnología, Instituto de Investigaciones Biomédicas, Universidad Nacional Autónoma de México, Cd. Universitaria, Coyoacán, 04510, Ciudad de México, Mexico.
Bioprocess Biosyst Eng. 2022 Jun;45(6):1033-1045. doi: 10.1007/s00449-022-02722-y. Epub 2022 Mar 26.
The selection of highly recombinant protein (RP)-productive Chinese hamster ovary (CHO) cell lines is widely carried out in shake flasks. It is assumed that increases in the operating parameters in shake flasks lead to impairments in cell growth and RP production. These effects in cells metabolism are widely associated with high mass transfers and hydrodynamic stress. This study examined the impact of commonly used operational parameters on growth and specific productivity (q) of two CHO cell lines differentially secreting a humanized anti-hIL8 monoclonal antibody (mAb) and cultured in 250 ml flasks. The evaluated parameters are filling volume (10, 15, and 20%), shaking frequency (60 and 120 revolutions per minute -rpm-), and orbital diameter (25.4 and 19 mm). The analysis of the oxygen transfer was done in terms of the measured volumetric mass transfer coefficient (ka) and of the hydrodynamics in terms of power input per unit volume of liquid (P/V), the turbulent eddy length scale measured by the Kolmogorov's microscale of turbulence, the energy dissipation rate, the average shear stress, and the shear rate. Though almost all measured kinetic and stoichiometric parameters remained unchanged, mAb titer included, significant differences were found in maximum cell concentration, 10-45% higher in conditions with lower values of ka and P/V. Changes in glucose metabolism contributing to q were only shown in the higher producer cell line. Non-lethal responses to elevated oxygen transfer and shear stress might be present and must be considered when evaluating CHO cell cultures in shake flasks.
高重组蛋白(RP)生产型中国仓鼠卵巢(CHO)细胞系的选择通常在摇瓶中进行。人们认为,摇瓶中的操作参数增加会导致细胞生长和 RP 生产受损。这些对细胞代谢的影响与高传质和流体动力应力广泛相关。本研究考察了常用操作参数对两种 CHO 细胞系生长和特异性产率(q)的影响,这两种 CHO 细胞系分别分泌人源化抗 hIL8 单克隆抗体(mAb),在 250ml 摇瓶中培养。评估的参数是填充体积(10%、15%和 20%)、摇床频率(60rpm 和 120rpm)和轨道直径(25.4mm 和 19mm)。氧传递的分析是根据测量的体积传质系数(ka)进行的,而根据单位液体体积的功率输入(P/V)、通过 Kolmogorov 微尺度湍流测量的湍流动能长度尺度、能量耗散率、平均剪切应力和剪切速率对流体力学进行了分析。尽管包括 mAb 滴度在内的几乎所有测量的动力学和化学计量参数保持不变,但在 ka 和 P/V 值较低的条件下,最大细胞浓度显著增加,增加了 10%-45%。仅在高产细胞系中观察到葡萄糖代谢变化对 q 的影响。可能存在对升高的氧传递和剪切应力的非致死反应,在评估摇瓶中的 CHO 细胞培养时必须考虑这些反应。