Abstract
AbstractWith the transition toward continuous bioprocessing, process analytical technology (PAT) is becoming necessary for rapid and reliable in-process monitoring during biotherapeutics manufacturing. Bioprocess 4.0 is looking to build an end-to-end bioprocesses that includes PAT-enabled real-time process control. This is especially important for drug product quality attributes that can change during bioprocessing, such as protein N-glycosylation, a critical quality attribute for most monoclonal antibody (mAb) therapeutics. Glycosylation of mAbs is known to influence their efficacy as therapeutics and is regulated for a majority of mAb products on the market today. Currently, there is no method to truly measure N-glycosylation using on-line PAT, hence making it impractical to design upstream process control strategies. We recently described the N-GLYcanyzer: an integrated PAT unit that measures mAb N-glycosylation within 3 hours of automated sampling from a bioreactor. Here, we integrated Agilent’s Instant PC (IPC) based chemistry workflow into the N-GLYcanzyer PAT unit to allow for nearly 10x faster mAb glycoforms analysis. Our methodology is explained in detail to allow for replication of the PAT workflow as well as present a case study demonstrating use of this PAT to autonomously monitor a mammalian cell perfusion process at the bench-scale to gain increased knowledge of mAb glycosylation dynamics during continuous biomanufacturing of biologics using Chinese Hamster Ovary (CHO) cells.Graphical Abstract
Publisher
Cold Spring Harbor Laboratory
Reference32 articles.
1. Gargalo, C. L. ; de las Heras, S. C. ; Jones, M. N. ; Udugama, I. ; Mansouri, S. S. ; Krühne, U. ; Gernaey, K. V. Towards the Development of Digital Twins for the Bio-Manufacturing Industry. In Advances in Biochemical Engineering/Biotechnology; Springer Berlin Heidelberg: Berlin, Heidelberg, 2020; pp 1–34. https://doi.org/10.1007/10_2020_142.
2. A Common Framework for Integrated and Continuous Biomanufacturing;Biotechnol. Bioeng,2021
3. Recent Advances in Integrated Process Analytical Techniques, Modeling, and Control Strategies to Enable Continuous Biomanufacturing of Monoclonal Antibodies. J;Chem. Technol. Biotechnol,2022
4. CRISPR/Cas9-Based Counterselection Boosts Recombineering Efficiency inPseudomonas putida
5. Harnessing the Potential of Artificial Neural Networks for Predicting Protein Glycosylation;Metab. Eng. Commun,2020
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