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Micro-slit Filter for Separation of Circulating Tumor Cells with High Recovery and High Purity

机译:微狭缝过滤器,用于分离具有高回收率和高纯度的循环肿瘤细胞

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We present a novel method for separating circulating tumor cells (CTCs) with high recovery and purity at the same time using a micro-slit filter chip and a fully automated fluidic system. Considering white blood cells (WBCs) as big as CTCs are also captured with CTCs during filtration, we amplified the size of CTCs specifically using microbeads (3 μm) coated with anti-Epithelial Cell Adhesion Molecule (anti-EpCAM) to increase the size difference between WBCs and CTCs. The average diameter of MCF-7 cells was increased from 16.5 μm to 23.1 μm. A micro filter chip having an extremely high aspect ratio (AR=3488) rectangular slit was designed to prevent clogging which induces unwanted aggregation, capturing of other small blood cells and consequently decreasing purity. A fully automated fluid control system was implemented for the better reproducibility and the minimization of handling errors. The procedures from blood loading to staining, prior to analysis, were performed automatically. With the optimized condition, separation experiments using 5ml of normal whole blood spiked with 100 MCF-7 cells have demonstrated the reduction of clogging, high recovery (91.1%) and high purity (52.0%) at the same time.
机译:我们提出了使用微缝隙滤波器芯片和一个完全自动化的流体系统在同一时间分离的循环肿瘤细胞(CTC)与高的回收率和纯度的新方法。考虑为CTC与CTC的过滤过程中也被捕获白血细胞(白细胞),为大,我们放大CTC的具体使用包被抗上皮细胞粘附分子(抗EpCAM)微珠(3微米)的大小,以增加的大小差异白细胞和CTC的之间。 MCF-7细胞的平均直径是从16.5微米增加至23.1微米。具有矩形狭缝被设计为防止堵塞诱导不希望的聚集,其它小血细胞捕获,并因此降低纯度非常高的纵横比(AR = 3488)。一种微滤波器芯片。一个完全自动化的流体控制系统是为更好的再现性和处理错误最小化来实现。从血液加载到染色的过程,在分析之前,被自动执行。用优化条件下,利用的正常全血5毫升分离实验掺有100 MCF-7细胞已经证明堵塞,高回收率(91.1%)和高纯度(52.0%)的同时减少。

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