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使用介电泳(LFFF-DEP)进行侧向流体流动分级分离,实现大小无关、无标记的循环肿瘤细胞分离。

Lateral fluid flow fractionation using dielectrophoresis (LFFF-DEP) for size-independent, label-free isolation of circulating tumor cells.

机构信息

Mechanical Engineering Department, Khalifa University, Abu Dhabi, P.O. Box 127788, United Arab Emirates.

Mechanical Engineering Department, Khalifa University, Abu Dhabi, P.O. Box 127788, United Arab Emirates; Concave Research center, Concordia University, Montreal H3G 1M8, Canada; Electrical Engineering Department, École de Technologie Supérieure, Montréal H3C 1K3, Canada.

出版信息

J Chromatogr B Analyt Technol Biomed Life Sci. 2018 Jun 15;1087-1088:133-137. doi: 10.1016/j.jchromb.2018.04.046. Epub 2018 Apr 30.

Abstract

This short communication introduces a continuous-flow, dielectrophoresis-based lateral fluid flow fractionation microdevice for detection/isolation of circulating tumor cells in the presence of other haematological cells. The device utilizes two sets of planar interdigitated transducer electrodes micropatterned on top of a glass wafer using standard microfabrication techniques. A microchannel with a single inlet and two outlets, realized in polydimethylsiloxane, is bonded on the glass substrate. The two sets of electrodes slightly protrude into the microchannel. Both of the electrode sets are energized with signals at different frequencies and different operating voltages ensuring that the cancer cells experience positive dielectrophoretic force from one set of the electrodes and negative dielectrophoretic force from the other array. Normal cells experience unequal negative dielectrophoretic forces from opposing sets of electrodes. The resultant dielectrophoretic forces on cancer and normal cells push them to flow towards their designed outlets. Successful isolation of green fluorescent protein-labelled MDA-MB-231 breast cancer cells from regular blood cells, both suspended in a sucrose/dextrose medium, is reported in this work.

摘要

本简讯介绍了一种基于连续流动介电泳的横向流体流动分离微器件,用于在存在其他血液细胞的情况下检测/分离循环肿瘤细胞。该器件利用两组平面叉指换能器电极,使用标准微纳加工技术在玻璃晶片上进行微图案化。在聚二甲基硅氧烷中实现了一个具有单个入口和两个出口的微通道,并键合在玻璃基底上。两组电极稍微突出到微通道中。两组电极都以不同的频率和不同的工作电压激励信号,以确保癌细胞从一组电极经历正介电泳力,而从另一组电极经历负介电泳力。正常细胞经历来自相反电极组的不等的负介电泳力。癌细胞和正常细胞上的合成介电泳力将它们推向设计的出口。本工作成功地从悬浮在蔗糖/葡萄糖介质中的常规血细胞中分离出绿色荧光蛋白标记的 MDA-MB-231 乳腺癌细胞。

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