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首页> 外文期刊>Journal of chromatography, A: Including electrophoresis and other separation methods >Improved sedimentation field-flow fractionation separation channel for concentrated cellular elution
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Improved sedimentation field-flow fractionation separation channel for concentrated cellular elution

机译:改进的沉降场流分级分离通道,用于浓缩细胞洗脱

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SdFFF is now commonly used for cell sorting. Nevertheless, as with many other separation methods, SdFFF Hyperlayer elution leads (1) to sample dilution resulting in cell loss which could restrict further use; and (2) to a high output flow rate impacting detector sensitivity and selectivity. In order to limit these problems, we proposed modifications of the SdFFF separation channel consisting both in downscaling and the insertion of an outlet stream splitter. This last system corresponded to a strip which divides the flow rate output into two parts, one containing concentrated cells in a reduced volume and flow rate, the other containing the excess mobile phase useless for further cell manipulation, detection and characterization. For the first time we have shown that splitter implementation and downscaling respected channel flowing and resulted in Hyperlayer elution of around 95% of cells in less than 50% of input flow rate. Improved cell sorting was demonstrated by enrichment (~10 times) of cancer stem cells from WiDr cells with two times less quantity of injected cells.
机译:现在,SdFFF通常用于细胞分选。然而,与许多其他分离方法一样,SdFFF超层洗脱导致(1)稀释样品,导致细胞损失,这可能会限制其进一步使用。 (2)高输出流速会影响检测器的灵敏度和选择性。为了限制这些问题,我们建议对SdFFF分离通道进行修改,包括缩小尺寸和插入出口分流器。该最后一个系统对应于一条条,该条将流速输出分成两部分,一个包含减小体积和流速的浓缩细胞,另一个包含多余的流动相,这些流动相对进一步的细胞操作,检测和表征无用。第一次,我们证明了分离器的实现和缩减规模会尊重通道流动,并导致在不到50%的输入流量的情况下,大约95%的细胞可以进行超层洗脱。通过从WiDr细胞中富集(约10倍)癌细胞干细胞(注入的细胞数量减少两倍),证明了细胞分选的改善。

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