Design strategies for integrated protein purification processes: challenges, progress and outlook

被引:81
作者
Nfor, Beckley K. [1 ]
Ahamed, Tangir [1 ]
van Dedem, Gijs W. K. [1 ]
van der Wielen, Luuk A. M. [1 ]
van de Sandt, Emile J. A. X. [2 ]
Eppink, Michel H. M. [3 ]
Ottens, Marcel [1 ]
机构
[1] Delft Univ Technol, Dept Biotechnol, Delft, Netherlands
[2] DSM Anti Infect, Delft, Netherlands
[3] NV Organon, Biotechnol Operat, Oss, Netherlands
关键词
protein purification; process development; process synthesis; high throughput experimentation; expert systems; algorithmic approach;
D O I
10.1002/jctb.1815
中图分类号
Q81 [生物工程学(生物技术)]; Q93 [微生物学];
学科分类号
071005 ; 0836 ; 090102 ; 100705 ;
摘要
The key to successful and efficient protein purification is the selection of the most appropriate purification techniques and their combination in a logical way to obtain the desired purification in the minimum number of steps. However, the rationalization of protein purification process development is faced with a number of challenges. In this paper, the challenges in protein purification process development are captured. The state-of-the-art in protein purification process synthesis and design is reviewed and the strengths and weaknesses of the current strategies highlighted. Finally, views on the future directions of protein purification process development are presented. (c) 2007 Society of Chemical Industry.
引用
收藏
页码:124 / 132
页数:9
相关论文
共 38 条
[31]   First comprehensive view on a magnetic separation based protein purification processes: From process development to cleaning validation of a GMP-ready magnetic separator [J].
Ebeler, Moritz ;
Pilgram, Florian ;
Wellhoefer, Thomas ;
Frankenfeld, Katrin ;
Franzreb, Matthias .
ENGINEERING IN LIFE SCIENCES, 2019, 19 (08) :591-601
[32]   OPTIMIZATION OF CNTs PRODUCTION USING FULL FACTORIAL DESIGN AND ITS ADVANCED APPLICATION IN PROTEIN PURIFICATION [J].
Mubarak, N. M. ;
Yusof, Faridah ;
Alkhatib, M. F. ;
Ameen, Emad ;
Khalid, M. ;
Mohammed, Al Saadi ;
Muataz, A. ;
Qudsieh, I. Y. ;
Rashmi, W. .
INTERNATIONAL JOURNAL OF NANOSCIENCE, 2010, 9 (03) :181-192
[33]   Analysis and optimal design of batch and two-column continuous chromatographic frontal processes for monoclonal antibody purification [J].
Shi, Ce ;
Vogg, Sebastian ;
Lin, Dong-Qiang ;
Sponchioni, Mattia ;
Morbidelli, Massimo .
BIOTECHNOLOGY AND BIOENGINEERING, 2021, 118 (09) :3420-3434
[34]   Machine learning-based Bayesian optimization facilitates ultrafiltration process design for efficient protein purification [J].
Lu, Qinglin ;
Zhang, Hao ;
Fan, Rong ;
Wan, Yinhua ;
Luo, Jianquan .
SEPARATION AND PURIFICATION TECHNOLOGY, 2025, 363
[35]   Use of models in the design of cross-flow microfilters for the purification of protein from bio-mixtures [J].
Hwang, Kuo-Jen ;
Wu, Rome-Ming .
JOURNAL OF THE CHINESE INSTITUTE OF CHEMICAL ENGINEERS, 2007, 38 (02) :125-133
[36]   A new paradigm in process synthesis focus on design of power plants and industrial processes integrated with CO2 capture [J].
Anantharaman, Rahul ;
Gundersen, Truls .
26TH EUROPEAN SYMPOSIUM ON COMPUTER AIDED PROCESS ENGINEERING (ESCAPE), PT A, 2016, 38A :1189-1194
[37]   Integrated tandem affinity protein purification using the polyhistidine plus extra 4 amino acids (HiP4) tag system [J].
Ino, Yoko ;
Yamaoka, Yutaro ;
Tanaka, Kiho ;
Miyakawa, Kei ;
Nishi, Mayuko ;
Hatayama, Yasuyoshi ;
Kimura, Hirokazu ;
Kimura, Yayoi ;
Ryo, Akihide .
PROTEOMICS, 2023, 23 (11)
[38]   ON THE USE OF MILD HYDROPHOBIC INTERACTION CHROMATOGRAPHY FOR METHOD-SCOUTING PROTEIN-PURIFICATION STRATEGIES IN AQUEOUS 2-PHASE SYSTEMS - A STUDY USING MODEL PROTEINS [J].
HUDDLESTON, JG ;
WANG, R ;
LYDDIATT, A .
BIOTECHNOLOGY AND BIOENGINEERING, 1994, 44 (05) :626-635