4.5 Article

Continuous optical in-line glucose monitoring and control in CHO cultures contributes to enhanced metabolic efficiency while maintaining darbepoetin alfa product quality

期刊

BIOTECHNOLOGY JOURNAL
卷 16, 期 8, 页码 -

出版社

WILEY-V C H VERLAG GMBH
DOI: 10.1002/biot.202100088

关键词

bioprocess monitoring; biosensors; cell culture; CHO cells; recombinant proteins

资金

  1. Bundesministerium fur Bildung und Forschung [0101-31P7809]
  2. Albert-und-Anneliese-Konanz Foundation
  3. Mannheim University of Applied Sciences

向作者/读者索取更多资源

This research focuses on improving the productivity, consistency, and quality of biopharmaceutical processes and products by developing new sensors for continuous monitoring of critical parameters. The glucose monitoring system developed in this study successfully maintains stable glucose levels over extended periods and does not have negative effects on protein quantity and quality.
Great efforts are directed towards improving productivity, consistency and quality of biopharmaceutical processes and products. One particular area is the development of new sensors for continuous monitoring of critical bioprocess parameters by using online or in-line monitoring systems. Recently, we developed a glucose biosensor applicable in single-use, in-line and long-term glucose monitoring in mammalian cell bioreactors. Now, we integrated this sensor in an automated glucose monitoring and feeding system capable of maintaining stable glucose levels, even at very low concentrations. We compared this fed-batch feedback system at both low (< 1 mM) and high (40 mM) glucose levels with traditional batch culture methods, focusing on glycosylation and glycation of the recombinant protein darbepoetin alfa (DPO) produced by a CHO cell line. We evaluated cell growth, metabolite and product concentration under different glucose feeding strategies and show that continuous feeding, even at low glucose levels, has no harmful effects on DPO quantity and quality. We conclude that our system is capable of tight glucose level control throughout extended bioprocesses and has the potential to improve performance where constant maintenance of glucose levels is critical.

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