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Enrichment of Circulating Tumor Cells from Whole Blood Using a Microfluidic Device for Sequential Physical and Magnetophoretic Separations

机译:使用微流控设备从全血中富集循环肿瘤细胞进行顺序的物理和磁泳分离

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摘要

Based on their high clinical potential, the isolation and enrichment of rare circulating tumor cells (CTCs) from peripheral blood cells has been widely investigated. There have been technical challenges with CTC separation methods using solely cancer-specific surface molecules or just using physical properties of CTCs, as they may suffer from heterogeneity or lack of specificity from overlapping physical characteristics with leukocytes. Here, we integrated an immunomagnetic-based negative enrichment method that utilizes magnetic beads attached to leukocyte-specific surface antigens, with a physical separation method that utilizes the distinct size and deformability of CTCs. By manipulating the pressure distribution throughout the device and balancing the drag and magnetic forces acting on the magnetically labeled white blood cells (WBCs), the sequential physical and magnetophoretic separations were optimized to isolate intact cancer cells, regardless of heterogeneity from whole blood. Using a breast cancer cell line in whole blood, we achieved 100% separation efficiency for cancer cells and an average of 97.2% for WBCs, which resulted in a 93.3% average separation purity. The experimental results demonstrated that our microfluidic device can be a promising candidate for liquid biopsy and can be a vital tool for aiding future cancer research.
机译:基于其高临床潜力,已经广泛研究了从外周血细胞中分离和富集稀有循环肿瘤细胞(CTC)。仅使用癌症特异性表面分子或仅使用CTC的物理特性的CTC分离方法存在技术挑战,因为它们可能会因白细胞重叠的物理特性而异质性或缺乏特异性。在这里,我们整合了一种基于免疫磁的负富集方法,该方法利用了附着于白细胞特异性表面抗原的磁珠,以及一种利用了CTC的独特大小和可变形性的物理分离方法。通过操纵整个设备的压力分布并平衡作用在磁性标记的白细胞(WBC)上的阻力和磁力,优化了顺序的物理和磁致分离,以分离完整的癌细胞,而不管全血的异质性如何。使用全血中的乳腺癌细胞系,我们实现了癌细胞的100%分离效率和WBC的平均97.2%分离率,平均分离纯度为93.3%。实验结果表明,我们的微流控设备可以成为液体活检的有希望的候选者,并且可以成为帮助未来癌症研究的重要工具。

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