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Dielectrophoresis has broad applicability to marker-free isolation of tumor cells from blood by microfluidic systems

机译:介电电泳技术可广泛应用于微流控系统从血液中分离无标记的肿瘤细胞

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摘要

The number of circulating tumor cells (CTCs) found in blood is known to be a prognostic marker for recurrence of primary tumors, however, most current methods for isolating CTCs rely on cell surface markers that are not universally expressed by CTCs. Dielectrophoresis (DEP) can discriminate and manipulate cancer cells in microfluidic systems and has been proposed as a molecular marker-independent approach for isolating CTCs from blood. To investigate the potential applicability of DEP to different cancer types, the dielectric and density properties of the NCI-60 panel of tumor cell types have been measured by dielectrophoretic field-flow fractionation (DEP-FFF) and compared with like properties of the subpopulations of normal peripheral blood cells. We show that all of the NCI-60 cell types, regardless of tissue of origin, exhibit dielectric properties that facilitate their isolation from blood by DEP. Cell types derived from solid tumors that grew in adherent cultures exhibited dielectric properties that were strikingly different from those of peripheral blood cell subpopulations while leukemia-derived lines that grew in non-adherent cultures exhibited dielectric properties that were closer to those of peripheral blood cell types. Our results suggest that DEP methods have wide applicability for the surface-marker independent isolation of viable CTCs from blood as well as for the concentration of leukemia cells from blood.
机译:血液中发现的循环肿瘤细胞(CTC)数量是原发性肿瘤复发的预后标志物,但是,目前大多数分离CTC的方法依赖于CTC未普遍表达的细胞表面标志物。介电电泳(DEP)可以区分和操纵微流体系统中的癌细胞,并且已被提议作为一种与分子标记无关的方法从血液中分离CTC。为了研究DEP对不同癌症类型的潜在适用性,已通过介电泳流分馏(DEP-FFF)测量了肿瘤细胞类型的NCI-60面板的介电和密度特性,并将其与亚群的类似特性进行了比较。正常的外周血细胞。我们显示,所有NCI-60细胞类型,无论其来源组织如何,均表现出介电特性,可通过DEP使其与血液隔离。在贴壁培养物中生长的实体瘤衍生的细胞类型表现出与外周血细胞亚群显着不同的介电特性,而在非贴壁培养物中生长的白血病衍生系的介电特性更接近于外周血细胞类型。我们的结果表明,DEP方法具有广泛的适用性,可用于从血液中分离可活的四氯化碳的表面标志物,以及从血液中浓缩白血病细胞的浓度。

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