Corning Life Sciences, Corning Incorporated, Corning, New York, USA.
Biotechnol J. 2024 Aug;19(8):e2300635. doi: 10.1002/biot.202300635.
Scalable single-use adherent cell-based biomanufacturing platforms are essential for unlocking the full potential of cell and gene therapies. The primary objective of this study is to design and develop a novel fixed bed bioreactor platform tailored specifically for scaling up adherent cell culture. The bioreactor comprises a packed bed of vertically stacked woven polyethylene terephthalate mesh discs, sandwiched between two-fluid guide plates. Leveraging computational fluid dynamics modeling, we optimized bioreactor design to achieve uniform flow with minimal shear stress. Residence time distribution measurements demonstrated excellent flow uniformity with plug flow characteristics. Periodic media sampling coupled with offline analysis revealed minimal gradients of crucial metabolites (glucose, glutamine, lactate, and ammonia) across the bioreactor during cell growth. Furthermore, the bioreactor platform demonstrated high performance in automated cell harvesting, with ≈96% efficiency and ≈98% viability. It also exhibited linear scalability in both operational parameters and performance for cell culture and adeno-associated virus vector production. We developed mathematical models based on oxygen uptake rates to accurately predict cell growth curves and estimate biomass in real-time. This study demonstrates the effectiveness of the developed fixed-bed bioreactor platform in enabling scalable adherent cell-based biomanufacturing with high productivity and process control.
可扩展的一次性贴壁细胞生物制造平台对于释放细胞和基因治疗的全部潜力至关重要。本研究的主要目的是设计和开发一种新型固定床生物反应器平台,专门用于扩大贴壁细胞培养规模。该生物反应器由垂直堆叠的编织聚对苯二甲酸乙二醇酯网片组成的填充床构成,夹在两流道导向板之间。利用计算流体动力学建模,我们对生物反应器设计进行了优化,以实现均匀的流动和最小的剪切应力。停留时间分布测量表明,在细胞生长过程中,具有塞流特征的流动具有极好的均匀性。周期性的介质采样结合离线分析表明,在生物反应器中,关键代谢物(葡萄糖、谷氨酰胺、乳酸和氨)的梯度很小。此外,该生物反应器平台在自动细胞收获方面表现出优异的性能,效率约为 96%,存活率约为 98%。它在细胞培养和腺相关病毒载体生产的操作参数和性能方面也具有线性可扩展性。我们开发了基于耗氧速率的数学模型,以准确预测细胞生长曲线并实时估计生物量。本研究证明了所开发的固定床生物反应器平台在实现高产率和过程控制的可扩展贴壁细胞生物制造方面的有效性。