A Systematic Approach for Scale-Down Model Development and Characterization of Commercial Cell Culture Processes

工艺验证 生化工程 计算机科学 生物反应器 比例(比率) 过程(计算) 生物过程 过程开发 工艺工程 可靠性工程 放大 设计质量 化学 工程类 运营管理 物理 有机化学 经典力学 量子力学 化学工程 操作系统 下游(制造业)
作者
Feng Li,Y. Hashimura,Ronald Pendleton,Janelle Harms,Elmer W. Collins,Barry Lee
出处
期刊:Biotechnology Progress [American Chemical Society]
卷期号:22 (3): 696-703 被引量:111
标识
DOI:10.1021/bp0504041
摘要

The objective of process characterization is to demonstrate robustness of manufacturing processes by understanding the relationship between key operating parameters and final performance. Technical information from the characterization study is important for subsequent process validation, and this has become a regulatory expectation in recent years. Since performing the study at the manufacturing scale is not practically feasible, development of scale-down models that represent the performance of the commercial process is essential to achieve reliable process characterization. In this study, we describe a systematic approach to develop a bioreactor scale-down model and to characterize a cell culture process for recombinant protein production in CHO cells. First, a scale-down model using 2-L bioreactors was developed on the basis of the 2000-L commercial scale process. Profiles of cell growth, productivity, product quality, culture environments (pH, DO, pCO2), and level of metabolites (glucose, glutamine, lactate, ammonia) were compared between the two scales to qualify the scale-down model. The key operating parameters were then characterized in single-parameter ranging studies and an interaction study using this scale-down model. Appropriate operation ranges and acceptance criteria for certain key parameters were determined to ensure the success of process validation and the process performance consistency. The process worst-case condition was also identified through the interaction study.
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