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Rapid separation of human breast cancer cells from blood using a simple spiral channel device

机译:使用简单的螺旋通道设备从血液中快速分离人乳腺癌细胞

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Circulating tumor cells (CTCs) are nomadic cells shed into peripheral blood from a primary tumor. As CTCs can be analyzed for early cancer detection and treatment monitoring, they play an important role in cancer diagnosis and therapy. Due to the extremely low number of CTCs in blood, separation has been regarded as an essential pretreatment step for the efficient detection of CTCs. In this work, we proposed a rapid and label-free method of separating human breast cancer cells from diluted blood using a spiral channel device. The effects of concentration and flow rate on blood cell focusing were investigated in order to optimize the operational parameters. Then, the separation of spiked MCF-7 cells was performed under a throughput of 400 ??L mina?’1 and a blood dilution ratio of 100 fold. It was found that 99.04% of blood cells could be removed after a second stage separation. To further improve the separation performance, we separated the tumor cells from the lysed blood samples, and 87.98% of tumor cells were successfully recovered. With its advantageous features of a simple design, easy fabrication and low flow resistance, our device is expected to have great potential in biomedical and clinical applications.
机译:循环肿瘤细胞(CTC)是从原发性肿瘤脱落到外周血中的游牧细胞。由于可以分析CTC进行早期癌症检测和治疗监测,因此它们在癌症诊断和治疗中起着重要作用。由于血液中四氯化碳的数量极少,分离已被视为有效检测四氯化碳的重要预处理步骤。在这项工作中,我们提出了一种使用螺旋通道设备从稀释血液中分离人乳腺癌细胞的快速且无标签的方法。为了优化操作参数,研究了浓度和流速对血细胞聚焦的影响。然后,在400ΔLmina-1的通量和100倍血液稀释率的条件下分离加标的MCF-7细胞。发现第二阶段分离后可以去除99.04%的血细胞。为了进一步提高分离性能,我们从裂解的血样中分离了肿瘤细胞,成功回收了87.98%的肿瘤细胞。凭借其设计简单,易于制造和低流阻的优势,我们的设备有望在生物医学和临床应用中具有巨大潜力。

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