设计质量
关键质量属性
Plackett–伯曼设计
生物过程
生化工程
单克隆抗体
生物反应器
工艺工程
质量(理念)
过程(计算)
岩藻糖基化
计算机科学
产量(工程)
生物技术
过程分析技术
过程开发
聚糖
化学
响应面法
抗体
工程类
生物
粒径
糖蛋白
化学工程
生物化学
免疫学
机器学习
材料科学
操作系统
哲学
冶金
认识论
有机化学
物理化学
作者
Cyrus Agarabi,John E. Schiel,Scott Lute,Brittany Chavez,Michael T. Boyne,Kurt Brorson,Mansoor A. Khan,Erik K. Read
摘要
Consistent high-quality antibody yield is a key goal for cell culture bioprocessing. This endpoint is typically achieved in commercial settings through product and process engineering of bioreactor parameters during development. When the process is complex and not optimized, small changes in composition and control may yield a finished product of less desirable quality. Therefore, changes proposed to currently validated processes usually require justification and are reported to the US FDA for approval. Recently, design-of-experiments-based approaches have been explored to rapidly and efficiently achieve this goal of optimized yield with a better understanding of product and process variables that affect a product's critical quality attributes. Here, we present a laboratory-scale model culture where we apply a Plackett-Burman screening design to parallel cultures to study the main effects of 11 process variables. This exercise allowed us to determine the relative importance of these variables and identify the most important factors to be further optimized in order to control both desirable and undesirable glycan profiles. We found engineering changes relating to culture temperature and nonessential amino acid supplementation significantly impacted glycan profiles associated with fucosylation, p-galactosylation, and sialylation. All of these are importantfor monoclonal antibody product quality.
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