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A novel filtration system for point of care washing of cellular therapy products

机译:一种新型过滤系统,用于细胞治疗产品的护理点

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Abstract The cell therapy industry would greatly benefit from a simple point of care solution to remove dimethylsulphoxide (DMSO) from small‐volume thawed cell suspensions before injection. A novel dead‐end filtration device has been designed and validated, which takes advantage of the higher density of thawed cell suspensions to remove the DMSO and protein impurities from the cell suspension without fouling the filter membrane. The filter was designed to avoid fluid circuits and minimize the surface area that is contacted by the cell suspension, thus reducing cell losses by design. The filtration process was established through optimization of the fluid flow configuration, backflush cycles and filter geometry. Overall, this novel filtration device allows for a 1?ml of thawed cryopreserved cell suspensions, containing 10 7 cells of a fetal lung fibroblast cell line (MRC‐5), to be washed in less than 30?min. More than 95% of the DMSO and up to 94% of the albumin–fluorescein–isothiocyanate content can be removed while the viable cell recovery is higher than 80%. It is also demonstrated that this system can be used for bone marrow‐derived human mesenchymal stem cells with more than 73% cell recovery and 85% DMSO reduction. This is the first time that a dead end (normal) filtration process has been used to successfully wash high‐density human cell suspensions. In practice, this novel solid–liquid separation technology fills the need for small‐volume washing in closed processing systems for cellular therapies. Copyright ? 2016 John Wiley & Sons, Ltd.
机译:摘要植物治疗行业将极大地受益于在注射前从小体积解冻的细胞悬浮液中除去二甲基磺氧化物(DMSO)的简单护理溶液。设计和验证了一种新的死端过滤装置,其利用较高的解冻细胞悬浮液密度,以从细胞悬浮液中除去DMSO和蛋白质杂质,而不会污染过滤膜。设计过滤器以避免流体电路并最小化由电池悬浮液接触的表面积,从而通过设计降低细胞损失。通过优化流体流动配置,反冲循环和过滤几何形状来建立过滤过程。总的来说,这种新型过滤装置允许含有10种胎儿肺成纤维细胞系(MRC-5)的10 7个细胞的1毫升解冻的冷冻保存细胞悬浮液,以在小于30Ω·min的情况下洗涤。可以除去超过95%的DMSO和高达94%的白蛋白 - 荧光素 - 异硫氰酸盐,而活细胞回收率高于80%。还证明该系统可用于骨髓衍生的人间充质干细胞,其细胞回收率超过73%和85%的DMSO还原。这是第一次死胡因(正常)过滤过程首次用于成功洗涤高密度的人细胞悬浮液。在实践中,这种新型固液分离技术填充了在封闭的加工系统中用于细胞疗法的小体积清洗。版权? 2016年John Wiley& SONS,LTD.

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