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Easy Perfusion for Anchorage-Dependent Cell Culture Using an Eppendorf Vessel with Microcarrier Spin Filter

机译:使用具有微载体旋转过滤器的EPPendorf容器易于灌注依赖于锚固依赖性细胞培养物

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Anchorage-dependent cells such as Vero cells are used widely as a platform for viral vaccine production. Perfusion bioprocesses enable a constant addition of nutrients and removal of byproducts while cells are in a bioreactor. That results in cell densities that are higher than those for conventional batch or fed-batch processes. In the study herein, Eppendorf researchers tested the suitability of a spin filter as a cell-retention device. They cultivated Vero cells on Cytodex 3 microcarriers (10 g/L)in an Eppendorf 3-L glass vessel using a microcarrier spin filter coupled with a pitched-blade impeller. The microcarrier spin filter is a cylinder-shaped cage that spins with the impeller shaft and is covered with a large 75-um screen designed to prevent microcarriers from being collected with waste media during perfusion. The process was controlled with a BioFlo 320 bioprocess control station. No additional devices were needed for the perfusion. With the unique design of this spin filter, the team easily cultivated anchorage-dependent Vero cells in perfusion mode on microcarriers and ensured a consistent supply of nutrients and removal of toxic byproducts.
机译:依赖依赖性细胞,如VERO细胞被广泛使用作为病毒疫苗产生的平台。灌注生物处理能够持续添加营养素并在细胞在生物反应器中除去副产物。这导致细胞密度高于常规批量或补料分批过程的细胞密度。在本文的研究中,EPPendorf研究人员测试了旋滤器作为细胞保留装置的适用性。它们在Eppendorf 3-L玻璃容器中培养了Cytodex 3微载体(10g / L)的vero细胞使用微载体旋转过滤器,与桨叶叶轮耦合。微载体旋转过滤器是圆柱形笼,其与叶轮轴旋转,并且覆盖着大型75μm屏幕,设计用于防止微载体在灌注期间用废介质收集。该过程用Bioflo 320生物处理控制站控制。灌注需要额外的设备。通过这种自旋过滤器的独特设计,该团队在微载体上容易培养依赖于灌注模式的依赖依赖性Vero细胞,并确保了一致的营养供应和去除有毒副产物。

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