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首页> 外文期刊>Biotechnology Progress >CFD-Aided Cell Settler Design Optimization and Scale-Up: Effect of Geometric Design and Operational Variables on Separation Performance
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CFD-Aided Cell Settler Design Optimization and Scale-Up: Effect of Geometric Design and Operational Variables on Separation Performance

机译:CFD辅助的细胞沉降器设计优化和放大:几何设计和操作变量对分离性能的影响

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摘要

The inclined multiplate (lamella) gravity settler has proven to be an effective cell retention device in industrial perfusion cell culture applications. Investigations on the effects of geometric design and operational variables of the cell settler are crucial to understanding how to best improve the settler performance. Maximizing the harvestlperfusion flow rate while minimizing viable cell loss out of the harvest is the primary challenge for optimization of the settler design. This study demonstrated that computational fluid dynamics (CFD) can be utilized to accurately model and evaluate the settler separation performance for near-monodisperse suspensions and therefore aid in the design optimization of the settler under these baseline conditions. With the preferred geometric features that were identified from CFD modeling results, we proposed design guidelines for the scale-up of these multiplate settler systems. With these guidelines and performance verification using the CFD model, a new large-scale settler was designed and fabricated for a perfusion cell culture process using a minimally aggregating production cell line. Perfusion cell culture runs with this particular cell line were performed with this settler, and the CFD model was able to predict the initial ramp-up performance, proving it to be a valuable scale-up design tool for this production process.
机译:倾斜的多板(薄片)重力沉降器已被证明是工业灌注细胞培养应用中的有效细胞保留装置。对电池沉降器的几何设计和操作变量的影响进行调查对于了解如何最好地改善沉降器性能至关重要。在优化沉降器设计的过程中,最大的挑战是最大程度地提高收获灌流流速,同时最大程度地减少收获后的活细胞损失。这项研究表明,可以使用计算流体动力学(CFD)来精确建模和评估近单分散悬浮液的沉降器分离性能,因此有助于在这些基线条件下优化沉降器的设计。根据从CFD建模结果中确定的首选几何特征,我们提出了针对这些多板沉降器系统进行放大的设计准则。通过这些指导原则和使用CFD模型的性能验证,设计并制造了一种新型的大规模沉降池,用于使用最少聚集的生产细胞系进行灌注细胞培养过程。使用该沉降器对特定细胞系进行灌注细胞培养,CFD模型能够预测初始的扩增性能,证明它是该生产过程中有价值的放大设计工具。

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