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Elimination of contaminants from cell preparations using aqueous two-phase partitioning

机译:使用水相两相分配法从细胞制备物中消除污染物

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Contamination by cell debris and non-viable cells is common in cell-based processes. Cell fragments and dead cells can be produced during culture and in purification steps, and often must be eliminated before analyses, subsequent process steps, and/or final application to avoid interference, fouling and reduced product yields. In the present work, the selective elimination of cell debris from CD133(+) stem cells by aqueous two-phase system (ATPS) partitioning is demonstrated. Two conventional ATPS systems showed no selectivity, with 100% of both cell debris and CD133(+) stem cells partitioning to the top phase of a Ficoll 400,000-dextran 70,000 system and 100% of both debris and CD133(+) cells partitioning to the bottom phase of a PEG 8000-dextran 500,000 system. In a novel UCON-dextran 75,000 system, however, 100% of the CD133(+) stem cells partitioned to the bottom phase, while non-viable cells, cell debris and other non-mononuclear cells all partitioned to some extent to the top phase, away from the desired CD133(+) cells. CD133(+) cell viability was at least 98% after ATPS processing. This result suggests that with larger phase ratios or continuous extraction, this or related ATPS systems could remove essentially all cell debris and non-viable cells with cell yield and viability both near 100%" This approach might find application in a wide variety of cell-based technologies. (C) 2015 Elsevier B.V. All rights reserved.
机译:在基于细胞的过程中,细胞碎片和不活细胞的污染很常见。细胞碎片和死细胞可以在培养过程中和纯化步骤中产生,通常必须在分析,后续处理步骤和/或最终应用之前消除,以避免干扰,结垢和降低的产品产量。在目前的工作中,证明了通过水相两相系统(ATPS)分配从CD133(+)干细胞中选择性清除细胞碎片。两种常规的ATPS系统没有选择性,细胞碎片和CD133(+)干细胞的100%都分配到Ficoll 400,000-葡聚糖70,000系统的顶相,而碎片和CD133(+)细胞的100%都分配给了Ficoll。 PEG 8000-葡聚糖500,000系统的底部相。但是,在新型的UCON-dextran 75,000系统中,CD133(+)干细胞100%分配到了下层相,而无活力的细胞,细胞碎片和其他非单核细胞都在一定程度上分配了上层相。 ,远离所需的CD133(+)细胞。在ATPS处理后,CD133(+)细胞生存力至少为98%。该结果表明,以较大的相比或连续提取,该或相关的ATPS系统可以清除几乎所有细胞碎片和不存活的细胞,细胞产率和存活率均接近100%”。这种方法可能会在各种各样的细胞中找到应用, (C)2015 Elsevier BV保留所有权利。

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