Upstream R&D, Merck Life Science, Darmstadt, Germany.
Institute for Organic Chemistry and Biochemistry, Technische Universität Darmstadt, Darmstadt, Germany.
Biotechnol Prog. 2022 Jul;38(4):e3251. doi: 10.1002/btpr.3251. Epub 2022 Apr 18.
Cell culture medium (CCM) formulations are chemically defined to reduce lot-to-lot variability and complexity of the medium while still providing all essential nutrients supporting cell growth and productivity of various cell lines. However, raw material impurities may still introduce variations and inconsistencies to final CCM formulations. In one of our previous studies (Weiss et al. Biotechnol Prog. 2021;37(4):e3148), we have demonstrated the impact of iron raw material impurity on Chinese hamster ovary (CHO) cell performance and critical quality attributes (CQAs) of recombinant proteins within the Cellvento® 4CHO CCM platform by identifying manganese impurity as the main root cause for improved cell performance and altered glycosylation profiles. This study sought to investigate the impact of iron raw material impurities within another medium platform, namely EX-CELL® Advanced CHO Fed-Batch-Medium. As opposed to previously published results, in this platform, copper instead of manganese impurity present within the used ferric ammonium citrate (FAC) iron source was responsible for an improved cell performance of a CHOZN® cell line and a slight difference in CQAs of the produced recombinant protein. The use of tightly controlled raw material specifications or the use of low impurity iron sources is therefore crucial to minimize the impact of impurities on cell performance in any CCM platform and thereby guarantee consistent and reproducible cell culture processes.
细胞培养基(CCM)配方经过化学定义,以降低批次间的变异性和培养基的复杂性,同时仍提供支持各种细胞系生长和生产力的所有必需营养素。然而,原材料杂质仍可能给最终的 CCM 配方带来变化和不一致。在我们之前的一项研究中(Weiss 等人,Biotechnol Prog. 2021;37(4):e3148),我们通过鉴定锰杂质是提高细胞性能和改变糖基化谱的主要根本原因,证明了铁原材料杂质对中国仓鼠卵巢(CHO)细胞性能和重组蛋白关键质量属性(CQAs)的影响在 Cellvento®4CHO CCM 平台内。本研究旨在研究另一种培养基平台(即 EX-CELL®Advanced CHO Fed-Batch-Medium)内铁原材料杂质的影响。与之前发表的结果相反,在这个平台中,存在于所用的柠檬酸铁铵(FAC)铁源中的铜杂质而不是锰杂质负责提高 CHOZN®细胞系的细胞性能,并对产生的重组蛋白的 CQAs 产生轻微差异。因此,使用严格控制的原材料规格或使用低杂质铁源对于在任何 CCM 平台中最小化杂质对细胞性能的影响至关重要,从而保证一致和可重复的细胞培养过程。