Model based adaptive control of a continuous capture process for monoclonal antibodies production

被引:66
|
作者
Steinebach, Fabian [1 ]
Angarita, Monica [1 ]
Karst, Daniel J. [1 ]
Muller-Spath, Thomas [1 ,2 ]
Morbidelli, Massimo [1 ]
机构
[1] ETH, Dept Chem & Appl Biosci, Inst Chem & Bioengn, CH-8093 Zurich, Switzerland
[2] ChromaCon AG, Zurich, Switzerland
关键词
Continuous bioprocessing; Protein A affinity chromatography; Continuous chromatography; Antibody purification; Process control; PROTEIN-A CHROMATOGRAPHY; MASS-TRANSFER; AFFINITY-CHROMATOGRAPHY; ADSORPTION; DESIGN; PURIFICATION; DIFFUSION; KINETICS;
D O I
10.1016/j.chroma.2016.03.014
中图分类号
Q5 [生物化学];
学科分类号
071010 ; 081704 ;
摘要
A two-column capture process for continuous processing of cell-culture supernatant is presented. Similar to other multicolumn processes, this process uses sequential countercurrent loading of the target compound in order maximize resin utilization and productivity for a given product yield. The process was designed using a novel mechanistic model for affinity capture, which takes both specific adsorption as well as transport through the resin beads into account. Simulations as well as experimental results for the capture of an IgG antibody are discussed. The model was able to predict the process performance in terms of yield, productivity and capacity utilization. Compared to continuous capture with two columns operated batch wise in parallel, a 2.5-fold higher capacity utilization was obtained for the same productivity and yield. This results in an equal improvement in product concentration and reduction of buffer consumption. The developed model was used not only for the process design and optimization but also for its online control. In particular, the unit operating conditions are changed in order to maintain high product yield while optimizing the process performance in terms of capacity utilization and buffer consumption also in the presence of changing upstream conditions and resin aging. (C) 2016 Elsevier B.V. All rights reserved.
引用
收藏
页码:50 / 56
页数:7
相关论文
共 50 条
  • [31] Recent advances in integrated process analytical techniques, modeling, and control strategies to enable continuous biomanufacturing of monoclonal antibodies
    Chopda, Viki
    Gyorgypal, Aron
    Yang, Ou
    Singh, Ravendra
    Ramachandran, Rohit
    Zhang, Haoran
    Tsilomelekis, George
    Chundawat, Shishir P. S.
    Ierapetritou, Marianthi G.
    JOURNAL OF CHEMICAL TECHNOLOGY AND BIOTECHNOLOGY, 2022, 97 (09) : 2317 - 2335
  • [32] Design and Operation of a Continuous Integrated Monoclonal Antibody Production Process
    Steinebach, Fabian
    Ulmer, Nicole
    Wolf, Moritz
    Decker, Lara
    Schneider, Veronika
    Walchli, Ruben
    Karst, Daniel
    Souquet, Jonathan
    Morbidelli, Massimo
    BIOTECHNOLOGY PROGRESS, 2017, 33 (05) : 1303 - 1313
  • [33] Direct adaptive control of nonlinear process based on fuzzy model
    Skrjanc, I
    Blazic, S
    Matko, D
    10TH IEEE INTERNATIONAL CONFERENCE ON FUZZY SYSTEMS, VOLS 1-3: MEETING THE GRAND CHALLENGE: MACHINES THAT SERVE PEOPLE, 2001, : 497 - 500
  • [34] Continuous precipitation-based capture step for recombinant antibodies
    Hammerschmidt, Nikolaus
    Hobiger, Stefanie
    Jungbauer, Alois
    ABSTRACTS OF PAPERS OF THE AMERICAN CHEMICAL SOCIETY, 2015, 249
  • [35] PRODUCTION AND QUALITY-CONTROL OF HUMAN MONOCLONAL-ANTIBODIES
    不详
    PHARMACOLOGY & TOXICOLOGY, 1991, 68 (01): : 70 - 74
  • [36] PRODUCTION AND QUALITY-CONTROL OF HUMAN MONOCLONAL-ANTIBODIES
    不详
    BIOLOGICALS, 1991, 19 (02) : 133 - 138
  • [37] Adaptive control Lyapunov function based model predictive control for continuous nonlinear systems
    Zheng, Yi
    Wang, Yanye
    Li, Shaoyuan
    INTERNATIONAL JOURNAL OF ROBUST AND NONLINEAR CONTROL, 2023, 33 (02) : 1254 - 1266
  • [38] Model-based adaptive process control: A CD-control example
    Gurer, E
    Zhong, T
    Lewellen, J
    Reynolds, R
    SOLID STATE TECHNOLOGY, 1998, 41 (07) : 205 - +
  • [39] Platform process for production of monoclonal antibodies for research purposes – improvement option
    Joern Meidahl Petersen
    Claus Kristensen
    BMC Proceedings, 5 (Suppl 8)
  • [40] Challenges in biotechnology production - generic processes and process optimization for monoclonal antibodies
    Sommerfeld, S
    Strube, J
    CHEMICAL ENGINEERING AND PROCESSING-PROCESS INTENSIFICATION, 2005, 44 (10) : 1123 - 1137