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Fluid mechanics, cell distribution, and environment in CellCube bioreacors

机译:CellCube生物reacors中的流体力学,细胞分布和环境

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Cultivation of MRC-5 cells and attenuated hepatitis A virus (HAV) for the production of VAQTA, an inactivated HAV vaccine (1), is performed in the CellCube reactor, a laminar flow fixed-bed bioreactor with an unusual diamond-shaped, diverging-converging flow geometry. These disposable bioreactors have found some popularity for the production of cells and gene therapy vectors at intermediate scales of operation (2,). Early testing of the CellCube revealed that the fluid mechanical environment played a significant role in nonuniform cell distribution patterns generated during the cell growth phase. Specifically, the reactor geometry and manufacturing artifacts, in combination with certain inoculum practices and circulation flow rates, can create cell growth behavior that is not simply explained. Via experimentation and computational fluid dynamics simulations we can account for practically all of the observed cell growth behavior, which appears to he due to a complex mixture of flow distribution, particle deposition under gravity, fluid shear, and possibly nutritional microenvironment.
机译:在CellCube反应器中进行培养MRC-5细胞和减毒的甲型肝炎病毒(HAV)以生产灭活的HAV疫苗(1)VAQTA,CellCube反应器是一种层流固定床生物反应器,具有不寻常的菱形,发散性-收敛的流动几何。这些一次性生物反应器在中等规模的细胞生产和基因治疗载体的生产中获得了广泛的应用(2)。 CellCube的早期测试表明,流体机械环境在细胞生长阶段产生的非均匀细胞分布模式中起着重要作用。具体而言,反应器的几何形状和制造假象,再加上某些接种方法和循环流速,会产生细胞生长行为,而这并不能简单解释。通过实验和计算流体动力学模拟,我们几乎可以解释观察到的所有细胞生长行为,这似乎是由于流量分布,重力作​​用下的颗粒沉积,流体剪切以及可能的营养微环境的复杂混合物所致。

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