Towards in silico Process Modeling for Vaccines

被引:18
作者
Cardillo, Antonio Gaetano [1 ]
Castellanos, Maria Monica [2 ]
Desailly, Benoit [3 ]
Dessoy, Sandrine [3 ]
Mariti, Marco [1 ]
Portela, Rui M. C. [3 ]
Scutella, Bernadette [2 ]
von Stosch, Moritz [3 ,4 ]
Tomba, Emanuele [1 ]
Varsakelis, Christos [3 ]
机构
[1] GSK, Tech Res & Dev, 1 Via Fiorentina, I-53100 Siena, SI, Italy
[2] GSK, Tech Res & Dev, 14200 Shady Grove Rd, Rockville, MD 20850 USA
[3] GSK, Tech Res & Dev, 89 Rue Inst, B-1330 Rixensart, Belgium
[4] Data How AG, Zuirichstr 137, CH-8600 Dubendorf, Switzerland
关键词
COMPUTATIONAL FLUID-DYNAMICS; SYSTEMS BIOLOGY; HEAT-TRANSFER; DESIGN; CHALLENGES; VISCOSITY; IMPLEMENTATION; FRAMEWORK; SELECTION; PRODUCT;
D O I
10.1016/j.tibtech.2021.02.004
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
Chemical, manufacturing, and control development timelines occupy a significant part of vaccine end-to-end development. In the on-going race for accelerating timelines, in silico process development constitutes a viable strategy that can be achieved through an artificial intelligence (AI)-driven or a mechanistically oriented approach. In this opinion, we focus on the mechanistic option and report on the modeling competencies required to achieve it. By inspecting the most frequent vaccine process units, we identify fluid mechanics, thermodynamics and transport phenomena, intracellular modeling, hybrid modeling and data science, and model-based design of experiments as the pillars for vaccine development. In addition, we craft a generic pathway for accommodating the modeling competencies into an in silico process development strategy.
引用
收藏
页码:1120 / 1130
页数:11
相关论文
共 85 条
[1]  
[Anonymous], 1959, COURSE THEORETICAL P
[2]  
[Anonymous], 2018, ASSESSING CREDIBILIT
[3]   Hybrid Modeling and Intensified DoE: An Approach to Accelerate Upstream Process Characterization [J].
Bayer, Benjamin ;
Striedner, Gerald ;
Duerkop, Mark .
BIOTECHNOLOGY JOURNAL, 2020, 15 (09)
[4]   Comparison of Modeling Methods for DoE-Based Holistic Upstream Process Characterization [J].
Bayer, Benjamin ;
von Stosch, Moritz ;
Striedner, Gerald ;
Duerkop, Mark .
BIOTECHNOLOGY JOURNAL, 2020, 15 (05)
[5]  
Braniff Nathan, 2018, Current Opinion in Systems Biology, V9, P42, DOI 10.1016/j.coisb.2018.02.005
[6]   The Impact of Systems Biology on Bioprocessing [J].
Campbell, Kate ;
Xia, Jianye ;
Nielsen, Jens .
TRENDS IN BIOTECHNOLOGY, 2017, 35 (12) :1156-1168
[7]   Both protein adsorption and aggregation contribute to shear yielding and viscosity increase in protein solutions [J].
Castellanos, Maria Monica ;
Pathak, Jai A. ;
Colby, Ralph H. .
SOFT MATTER, 2014, 10 (01) :122-131
[8]   Model-based design of experiments for cellular processes [J].
Chakrabarty, Ankush ;
Buzzard, Gregery T. ;
Rundell, Ann E. .
WILEY INTERDISCIPLINARY REVIEWS-SYSTEMS BIOLOGY AND MEDICINE, 2013, 5 (02) :181-203
[9]   Digital Twins in Pharmaceutical and Biopharmaceutical Manufacturing: A Literature Review [J].
Chen, Yingjie ;
Yang, Ou ;
Sampat, Chaitanya ;
Bhalode, Pooja ;
Ramachandran, Rohit ;
Ierapetritou, Marianthi .
PROCESSES, 2020, 8 (09)
[10]   A framework of hybrid model development with identification of plant-model mismatch [J].
Chen, Yingjie ;
Ierapetritou, Marianthi .
AICHE JOURNAL, 2020, 66 (10)