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DEAN FLOW FRACTIONATION (DFF) ISOLATION OF CIRCULATING TUMOR CELLS (CTCs) FROM BLOOD

机译:Dean流量分馏(DFF)从血液中循环肿瘤细胞(CTC)的分离

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Isolation and enumeration of circulating tumor cells (CTCs) as cancer biomarkers have been challenging due to their extremely low abundance in blood. This paper reports an ultra high-throughput technique for CTCs isolation from blood using the inherent Dean vortex flows present in curvilinear channels, aptly termed Dean Flow Fractionation (DFF). Using a 2-inlet 2-outlet spiral microchannel, the separation principle exploits the difference in cell size between CTCs (~16-20 μm diameter) and other blood cells (RBCs ~8 μm; leukocytes ~8-14 μm). Experimental results confirm >99% RBCs and, leukocytes removal from blood sample (20% hematocrit) spiked with MCF-7 cells with >90% tumor cell recovery after separation. The developed technique offers large sample processing capability due to its ability to process very high hematocrit samples (20%), a key requirement for isolating rare-cells. A single device can process 1 mL whole blood in a single step, under 15 min.
机译:循环肿瘤细胞(CTC)作为癌症生物标志物的分离和计数由于它们在血液中极低的丰度而挑战。本文报告了使用曲线通道中存在的固有的Dean Vortex流程的CTCS隔离的超高通量技术,恰当称为Dean流量分馏(DFF)。使用2入口2出口螺旋微通道,分离原理利用CTCS(〜16-20μm直径)和其他血细胞(RBCS〜8μm;白细胞〜8-14μm之间的细胞尺寸的差异。实验结果证实了> 99%的RBCS和,白细胞从血液样品(20%血细胞比容)中除去,用MCF-7细胞加入> 90%肿瘤细胞恢复后分离后。开发技术由于其处理非常高血管样品(20%)的能力而提供了大的样品加工能力,这是分离稀有细胞的关键要求。单个装置可以在15分钟内完成1毫升全血。

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