首页> 外文会议>Conference on single-use technologies III >OPTIMIZATION OF THE SINGLE USE BIOREACTOR FOR GROWTH AND BEAD-TO-BEAD TRANSFER OF VERO CELLS CULTURED ON MICROCARRIERS
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OPTIMIZATION OF THE SINGLE USE BIOREACTOR FOR GROWTH AND BEAD-TO-BEAD TRANSFER OF VERO CELLS CULTURED ON MICROCARRIERS

机译:在微载体上培养的病毒细胞的生长和从珠到珠的转移的单次使用生物因子的优化

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Scale up and vaccine production processes of adherent cells, such as Vero cells face many challenges. The fundamental steps of equipment selection and chosen operating parameters have a significant impact upon the detachment and reattachment of cells through the scale up process. Microcarriers greatly increase the surface area for adherent cells and offer flexibility for expansion to bioreactors, but scale-up methods require optimization of the mixing within the vessel and also optimization of how the cells are transferred from bead to bead at each step in the seed train. In this study we take a process previously shown to a work in spinner flasks (<1L) and demonstrate how the 50L Thermo Scientific™ HyPerforma™ Single-Use Bioreactors (S.U.B.) can be optimized for growing and scaling adherent cells on microcarriers, methods for bead-to-bead transfer of the cells at each scaling step, and final cell isolation using the Harvestainer single use bead capture bag.
机译:贴壁细胞(例如Vero细胞)的规模放大和疫苗生产过程面临许多挑战。设备选择的基本步骤和选择的操作参数对按比例放大过程中细胞的分离和重新附着有重大影响。微载体极大地增加了贴壁细胞的表面积,并为扩展到生物反应器提供了灵活性,但是放大方法需要优化容器内的混合,还需要优化种子序列中每个步骤中细胞从珠子转移到珠子的方式。 。在这项研究中,我们采用了先前在旋转瓶(<1L)中工作的过程,并演示了如何优化50L Thermo Scientific™HyPerforma™一次性生物反应器(SUB)以在微载体上生长和缩放粘附细胞,方法在每个缩放步骤中将细胞从珠子转移到珠子,并使用Harvestainer一次性珠子捕获袋进行最终细胞分离。

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