Biologics Process Sciences, Biotech Sciences, UCB Pharma S.A., Avenue de l'Industrie, Brussels, Braine l'Alleud, Belgium.
Biotechnol Bioeng. 2023 Sep;120(9):2509-2522. doi: 10.1002/bit.28396. Epub 2023 Apr 7.
Process intensification has been widely used for many years in the mammalian biomanufacturing industry to increase productivity, agility and flexibility while reducing production costs. The most commonly used intensified processes are operated using a perfusion or fed-batch seed bioreactor enabling a higher than usual seeding density in the fed-batch production bioreactor. Hence, as part of the growth phase is shifted to the seed bioreactor, there is a lower split ratio, which increases the criticality of the seed bioreactor and could impact production performance. Therefore, such intensified processes should be designed and characterized for robust process scale-up. This research work is focused on intensified processes with high seeding density inoculated from seed bioreactor in fed-batch mode. The impact of the feeding strategy and specific power input (P/V) in the seed bioreactor and on the production step with two different cell lines (CL1 and CL2) producing two different monoclonal antibodies was investigated. Cell culture performance in the production bioreactor has been improved due to more stressful conditions for the cells in the seed bioreactor and the impact of the production bioreactor P/V on the production performance was limited. This is the first reported study highlighting a positive impact of cellular stress in seed bioreactors on intensified production bioreactor with the introduction of the "organized stress" concept.
多年来,强化工艺已广泛应用于哺乳动物生物制造行业,以提高生产力、敏捷性和灵活性,同时降低生产成本。最常用的强化工艺是在灌注或补料分批种子生物反应器中操作,使补料分批生产生物反应器中的接种密度高于通常水平。因此,由于生长阶段的一部分转移到种子生物反应器,因此分裂比降低,这增加了种子生物反应器的关键性,并可能影响生产性能。因此,此类强化工艺应针对稳健的工艺放大进行设计和表征。这项研究工作集中在从种子生物反应器以补料分批方式接种高接种密度的强化工艺上。研究了补料策略和特定功率输入(P/V)对种子生物反应器和具有两种不同细胞系(CL1 和 CL2)的生产阶段的影响,这两种细胞系产生两种不同的单克隆抗体。由于种子生物反应器中细胞的条件更加苛刻,生产生物反应器中的细胞培养性能得到了改善,并且生产生物反应器的 P/V 对生产性能的影响有限。这是首次报道强调在引入“有组织的压力”概念的情况下,种子生物反应器中的细胞压力对强化生产生物反应器产生积极影响的研究。