Addressing amino acid‐derived inhibitory metabolites and enhancing CHO cell culture performance through DOE‐guided media modifications

中国仓鼠卵巢细胞 化学定义介质 氨基酸 补料分批培养 细胞培养 生物化学 化学 食品科学 生物 色谱法 体外 遗传学 发酵 受体
作者
Pranay Ladiwala,Venkata Gayatri Dhara,Jackson Jenkins,Bingyu Kuang,Duc Hoang,Seongkyu Yoon,Michael J. Betenbaugh
出处
期刊:Biotechnology and Bioengineering [Wiley]
卷期号:120 (9): 2542-2558 被引量:7
标识
DOI:10.1002/bit.28403
摘要

Abstract Previously, we identified six inhibitory metabolites (IMs) accumulating in Chinese hamster ovary (CHO) cultures using AMBIC 1.0 community reference medium that negatively impacted culture performance. The goal of the current study was to modify the medium to control IM accumulation through design of experiments (DOE). Initial over‐supplementation of precursor amino acids (AAs) by 100% to 200% in the culture medium revealed positive correlations between initial AA concentrations and IM levels. A screening design identified 5 AA targets, Lys, Ile, Trp, Leu, Arg, as key contributors to IMs. Response surface design analysis was used to reduce initial AA levels between 13% and 33%, and these were then evaluated in batch and fed‐batch cultures. Lowering AAs in basal and feed medium and reducing feed rate from 10% to 5% reduced inhibitory metabolites HICA and NAP by up to 50%, MSA by 30%, and CMP by 15%. These reductions were accompanied by a 13% to 40% improvement in peak viable cell densities and 7% to 50% enhancement in IgG production in batch and fed‐batch processes, respectively. This study demonstrates the value of tuning specific AA levels in reference basal and feed media using statistical design methodologies to lower problematic IMs.
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