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一种使用介电泳连续操纵生物细胞的微流控装置。

A microfluidic device for continuous manipulation of biological cells using dielectrophoresis.

机构信息

Department of Electrical Engineering, Indian Institute of Technology, Kharagpur 721302, India.

Department of Electrical Engineering, Indian Institute of Technology, Kharagpur 721302, India.

出版信息

Med Eng Phys. 2014 Jun;36(6):726-31. doi: 10.1016/j.medengphy.2013.12.010. Epub 2013 Dec 30.

Abstract

The present study demonstrates the design, simulation, fabrication and testing of a label-free continuous manipulation and separation micro-device of particles/biological cells suspended on medium based on conventional dielectrophoresis. The current dielectrophoretic device uses three planner electrodes to generate non-uniform electric field and induces both p-DEP and n-DEP force simultaneously depending on the dielectric properties of the particles and thus influencing at least two types of particles at a time. Numerical simulations were performed to predict the distribution of non-uniform electric field, DEP force and particle trajectories. The device is fabricated utilizing the advantage of bonding between PDMS and SU8 polymer. The p-DEP particles move away from the center of the streamline, while the n-DEP particles will follow the central streamline along the channel length. Dielectrophoretic effects were initially tested using polystyrene beads followed by manipulation of HeLa cells. In the experiment, it was observed that polystyrene beads in DI water always response as n-DEP up to 1MHz frequency, whereas HeLa cells in PBS medium response as n-DEP up to 400kHz frequency and then it experiences p-DEP up to 1MHz. Further, the microscopic observations of DEP responses of HeLa cells were verified by performing trapping experiment at static condition.

摘要

本研究展示了一种基于传统介电泳的无标记连续操作和分离微器件的设计、模拟、制造和测试,用于悬浮在介质中的颗粒/生物细胞。目前的介电泳装置使用三个平面电极产生不均匀电场,并根据颗粒的介电特性同时产生 p-DEP 和 n-DEP 力,从而同时影响至少两种类型的颗粒。进行了数值模拟以预测非均匀电场、DEP 力和颗粒轨迹的分布。该器件利用 PDMS 和 SU8 聚合物之间的键合优势制造。p-DEP 颗粒会从流线的中心移动,而 n-DEP 颗粒将沿着通道长度跟随中央流线。最初使用聚苯乙烯珠粒测试介电泳效应,然后对 HeLa 细胞进行操作。在实验中,观察到 DI 水中的聚苯乙烯珠粒在 1MHz 频率下始终表现为 n-DEP,而 PBS 介质中的 HeLa 细胞在 400kHz 频率下表现为 n-DEP,然后在 1MHz 频率下表现为 p-DEP。此外,通过在静态条件下进行捕获实验,验证了 HeLa 细胞介电泳响应的微观观察。

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