中国仓鼠卵巢细胞
过程(计算)
化学
过程分析技术
生化工程
色谱法
化学工程
工艺工程
计算生物学
计算机科学
生物化学
生物
生物过程
工程类
受体
操作系统
作者
Jianfa Ou,Wanyue Cui,Yuxiang Zhao,Yawen Tang,Alexander Williams,Dhanuka P. Wasalathanthri,Jianlin Xu,Jong‐Chan Lee,Michael Borys,Anurag Khetan
摘要
Abstract Media preparation parameters contribute significantly to media quality, cell culture performance, productivity, and product quality. Establishing proper media preparation procedures is critical for ensuring a robust CHO cell culture process. Process analytical technology (PAT) enables unique ways to quantify assessments and improve media quality. Here, cell culture media were prepared under a wide range of temperatures (40–80°C) and pH (7.6–10.0). Media quality profiles were compared using three real‐time PATs: Fourier‐transform infrared (FTIR) spectroscopy, Raman spectroscopy, and excitation‐emission matrix (EEM) spectroscopy. FTIR and Raman spectroscopies identified shifts in media quality under high preparation temperature (80°C) and at differing preparation pH which negatively impacted monoclonal antibody (mAb) production. In fed‐batch processes for production of three different mAbs, viable cell density (VCD) and cell viability were mostly unaffected under all media preparation temperatures, while titer and cell specific productivity of mAb decreased when cultured in basal and feed media prepared at 80°C. High feed preparation pH alone was tolerated but cell growth and productivity profiles deviated from the control condition. Further, charge variants (main, acidic, basic species) and glycosylation (G0F, afucosylation, and high mannose) were examined. Statistically significant differences were observed for one or more of these quality attributes with any shifts in media preparation. In this study, we demonstrated strong associations between media preparation conditions and cell growth, productivity, and product quality. The rapid evaluation of media by PAT implementation enabled more comprehensive understanding of different parameters on media quality and consequential effects on CHO cell culture.
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