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Selective trapping of single mammalian breast cancer cells by insulator-based dielectrophoresis

机译:基于绝缘子的介电电泳选择性捕获单个哺乳动物乳腺癌细胞

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The trapping or immobilization of individual cells at specific locations in microfluidic platforms is essential for single cell studies, especially those requiring cell stimulation and downstream analysis of cellular content. Selectivity for individual cell types is required when mixtures of cells are analyzed in heterogeneous and complex matrices, such as the selection of metastatic cells within blood samples. Here, we demonstrate a microfluidic device based on direct current (DC) insulator-based dielectrophoresis (iDEP) for selective trapping of single MCF-7 breast cancer cells from mixtures with both mammalian peripheral blood mononuclear cells (PBMC) as well MDA-MB-231 as a second breast cancer cell type. The microfluidic device has a teardrop iDEP design optimized for the selective capture of single cells based on their differential DEP behavior under DC conditions. Numerical simulations adapted to experimental device geometries and buffer conditions predicted the trapping condition in which the dielectrophoretic force overcomes electrokinetic forces for MCF-7 cells, whereas PBMCs were not trapped. Experimentally, selective trapping of viable MCF-7 cells in mixtures with PBMCs was demonstrated in good agreement with simulations. A similar approach was also executed to demonstrate the selective trapping ofMCF-7 cells in a mixture with MDA-MB-231 cells, indicating the selectivity of the device for weakly invasive and highly invasive breast cancer cells. The DEP studies were complemented with cell viability tests indicating acceptable cell viability over the course of an iDEP trapping experiment.
机译:将单个细胞捕获或固定在微流体平台中的特定位置对于单细胞研究至关重要,尤其是那些需要细胞刺激和细胞内含物下游分析的研究。在异质和复杂基质中分析细胞混合物时,例如在血液样本中选择转移性细胞时,需要对单个细胞类型具有选择性。在这里,我们展示了一种基于直流(DC)绝缘子基介电电泳(iDEP)的微流控装置,该装置可用于从单个哺乳动物MCF-7乳腺癌细胞与哺乳动物外周血单核细胞(PBMC)以及MDA-MB- 231是第二种乳腺癌细胞类型。该微流体设备具有泪滴iDEP设计,该设计针对单细胞在DC条件下的差异DEP行为而选择性捕获进行了优化。适应实验装置的几何形状和缓冲条件的数值模拟预测了捕获条件,其中介电泳力克服了MCF-7细胞的电动势,而未捕获PBMC。实验证明,与PBMC混合存在有活力的MCF-7细胞的选择性捕获与模拟非常吻合。还执行了类似的方法来证明将MCF-7细胞与MDA-MB-231细胞混合存在选择性捕获,表明该装置对微浸润和高浸润性乳腺癌细胞具有选择性。 DEP研究辅以细胞活力测试,表明在iDEP捕获实验过程中可接受的细胞活力。

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