中国仓鼠卵巢细胞
瞬态(计算机编程)
融合蛋白
融合
细胞生物学
卵巢
生产(经济)
质量(理念)
化学
重组DNA
生物
计算机科学
物理
内分泌学
生物化学
受体
基因
经济
操作系统
哲学
语言学
量子力学
宏观经济学
作者
Araya Jivapetthai,Wanatchaporn Arunmanee,Natapol Pornputtapong
标识
DOI:10.1016/j.btre.2025.e00882
摘要
Quality by design (QbD) is applied to the upstream process to maximize the RBD-Fc fusion protein production in CHO cells. The three factors (culture duration, temperature, and polyethyleneimine to plasmid DNA (PEI-Max/pDNA) ratio) were identified as critical process attributes based on risk analysis (FMEA) and further optimized by response surface to maximize the protein yields. Using a Box-Behnken design, the optimal conditions for RBD-Fc production were determined to be a culture duration of 5 days, a culture temperature of 34.4 °C, and a PEI-Max/pDNA ratio of 4.2:1 (w/w) with a predictive value of 48 mg/L (desirability of 92.8 %). The PEI-Max/pDNA ratio and its interaction with culture duration to express the highest yield (47.78 ± 2.30 mg/l). In addition, the purified CHO-produced RBD-Fc fusion protein was highly pure and strongly bound to its receptor, ACE2. Our finding demonstrated that the QBD tools can identify the critical parameters to facilitate scaling-up production.
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