Huang Zhuangrong, Lee Dong-Yup, Yoon Seongkyu
Department of Chemical Engineering, University of Massachusetts Lowell, One University Avenue, Lowell, Massachusetts.
Department of Chemical and Biomolecular Engineering, National University of Singapore, Singapore, Singapore.
Biotechnol Bioeng. 2017 Dec;114(12):2717-2728. doi: 10.1002/bit.26384. Epub 2017 Sep 11.
Chinese hamster ovary (CHO) cells have been widely used for producing many recombinant therapeutic proteins. Constraint-based modeling, such as flux balance analysis (FBA) and metabolic flux analysis (MFA), has been developing rapidly for the quantification of intracellular metabolic flux distribution at a systematic level. Such methods would produce detailed maps of flows through metabolic networks, which contribute significantly to better understanding of metabolism in cells. Although these approaches have been extensively established in microbial systems, their application to mammalian cells is sparse. This review brings together the recent development of constraint-based models and their applications in CHO cells. The further development of constraint-based modeling approaches driven by multi-omics datasets is discussed, and a framework of potential modeling application in cell culture engineering is proposed. Improved cell culture system understanding will enable robust developments in cell line and bioprocess engineering thus accelerating consistent process quality control in biopharmaceutical manufacturing.
中国仓鼠卵巢(CHO)细胞已被广泛用于生产多种重组治疗性蛋白质。基于约束的建模方法,如通量平衡分析(FBA)和代谢通量分析(MFA),在系统层面上对细胞内代谢通量分布的量化方面发展迅速。这些方法能够生成代谢网络流量的详细图谱,对更好地理解细胞代谢有重要意义。尽管这些方法在微生物系统中已得到广泛应用,但在哺乳动物细胞中的应用却很少。本文综述了基于约束的模型的最新进展及其在CHO细胞中的应用。讨论了由多组学数据集驱动的基于约束的建模方法的进一步发展,并提出了在细胞培养工程中潜在建模应用的框架。对细胞培养系统的深入理解将有助于细胞系和生物工艺工程的稳健发展,从而加速生物制药生产中的一致过程质量控制。