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Quantitative experimental study of shear stresses and mixing in progressive flow regimes within annular-flow bioreactors

机译:环形流动生物反应器内渐进流动状态下剪切应力和混合的定量实验研究

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Annular-flow bioreactors are normally operated under laminar Couette flow conditions in order to minimise shear-induced damage to cells. In this study, we computed the fluid shear stresses in model annular vessels over a range of laminar flow regimes, from Couette flow to Taylor-vortex flow, and at two geometric scales, using a shear rate model for freely suspended particles, together with experimental Laser Doppler Anemometry data for a 2-D velocity field. The shear stresses were greatest in the boundary layers adjacent to each wall in each case, with values typically 6 times higher than the mean stresses in the annular space; their respective magnitudes were significantly lower in the larger of the two vessels studied, however. Cell viability studies were also performed in which mammalian cells were cultured under dynamic conditions in a functional bioreactor having the same dimensions as the smaller vessel. The results of these studies demonstrated that a significantly greater number of cells remained in suspension in Taylor-vortex flows than in Couette flow, but at the expense of cell viability at higher Taylor numbers. Taken together, these findings suggest that the benefits of enhanced convective mass transport afforded by Taylor-Couette flows could be realised without risk of appreciable shear induced damage of cells and tissues in larger vessels operating under dynamically similar flow conditions. (C) 2004 Elsevier Ltd. All rights reserved.
机译:环形流动生物反应器通常在层流库埃特流动条件下运行,以最大程度地减少剪切诱导的细胞损伤。在这项研究中,我们使用自由悬浮颗粒的剪切速率模型以及实验方法,计算了模型环形容器在一定范围的层流状态下(从库埃特流到泰勒涡流)以及两个几何尺度上的流体切应力。二维速度场的激光多普勒风速测量数据。在每种情况下,与每个壁相邻的边界层的剪应力最大,其值通常比环形空间中的平均应力高6倍。然而,在所研究的两个容器中,较大的两个容器的各自大小明显较低。还进行了细胞活力研究,其中在动态条件下在具有与较小容器相同尺寸的功能性生物反应器中培养哺乳动物细胞。这些研究的结果表明,在泰勒涡流中,悬浮液中的细胞数量要比库埃特流中的细胞数量要多得多,但要以更高的泰勒数下的细胞活力为代价。综上所述,这些发现表明,在动态相似的流动条件下操作的较大血管中,泰勒-库埃特流可提供增强的对流传质的优势,而无明显剪切剪切引起的细胞和组织损伤的风险。 (C)2004 Elsevier Ltd.保留所有权利。

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