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A Microbore Tubing Based Spiral for Multistep Cell Fractionation

机译:基于微磁管的多管细胞分级螺旋

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摘要

Cells were separated with the aid of a multistep spiral fractionation device, utilizing hydrodynamic forces in a spiral tubing. The spiral was fabricated using "off-the-shelf' microbore tubing, allowing for cheap and fast prototyping to achieve optimal cell separation. As a first step, a model system with 20 and 40 mu m beads was used to demonstrate the effectiveness of the multistep separation device. With an initial purity of 5%, a separation purity of 83% was achieved after a two-step separation with the addition of 0.1% polyethylene glycol (PEG)-8000. Next, doxorubicinresistant polyploid giant breast cancer cells (MDA-MB-231) were separated from doxorubicin-sensitive monoploid small breast cancer cells in the same fashion as the beads, resulting in a purity of around 40%, while maintaining a cell viability of more than 90%. Combined with basic cell analytical methods, the hydrodynamic separation principle of the device could be envisaged to be useful for a variety of cell fractionation needs in cell biology and in clinical applications.
机译:利用螺旋管中的流体动力力分离细胞。使用“搁板”的微磁管制造螺旋,允许廉价和快速的原型设计,以实现最佳的细胞分离。作为第一步,使用具有20和40μm珠的模型系统来证明其有效性多步骤分离装置。初始纯度为5%,在加入0.1%聚乙二醇(PEG)-8000的两步分离后,实现了83%的分离纯度。接下来,多柔枯的多倍体多倍体乳腺癌细胞(MDA与珠子相同的时尚与多柔枯蛋白敏感的单倍体小乳腺癌细胞分离出-MB-231,导致纯度约为40%,同时保持细胞活力超过90%。结合碱性细胞分析方法,可以设想该装置的流体动力分离原理,可用于细胞生物学和临床应用中的各种细胞分级需求。

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