微载波
维罗细胞
商业化
比例(比率)
叶轮
产品(数学)
过程(计算)
单变量
细胞培养
计算机科学
生物
工程类
病毒学
多元统计
物理
数学
机械工程
病毒
业务
机器学习
遗传学
几何学
营销
量子力学
操作系统
作者
Renjing Huang,K. Wang,Matthew Flamm,Jorge Vázquez,Chris Gercke,Christopher Ton,Travis Whitmer,Pamela K. Mathis,Kristin J. M. Ploeger,Shahid Rameez
摘要
Scale-down models (SDM) are pivotal tools for process understanding and improvement to accelerate the development of vaccines from laboratory research to global commercialization. In this study, a 3 L SDM representing a 50 L scale Vero cell culture process of a live-attenuated virus vaccine using microcarriers was developed and qualified based on the constant impeller power per volume principle. Both multivariate data analysis (MVDA) and the traditional univariate data analysis showed comparable and equivalent cell growth, metabolic activity, and product quality results across scales. Computational fluid dynamics simulation further confirmed similar hydrodynamic stress between the two scales.
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