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首页> 外文期刊>Electrophoresis: The Official Journal of the International Electrophoresis Society >Label-free detection of multidrug resistance in K562 cells through isolated 3D-electrode dielectrophoresis
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Label-free detection of multidrug resistance in K562 cells through isolated 3D-electrode dielectrophoresis

机译:通过分离的3D电极介电电泳技术无标记地检测K562细胞中的多药耐药性

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摘要

Dielectrophoresis (DEP), a technique used to separate particles based on different sizes and/or dielectric properties under nonuniform electric field, is a promising method to be applied in label-free, rapid, and effective cell manipulation and separation. In this study, a microelectromechanical systems-based, isolated 3D-electrode DEP device has been designed and implemented for the label-free detection of multidrug resistance in K562 leukemia cells, based on the differences in their cytoplasmic conductivities. Cells were hydrodynamically focused to the 3D-electrode arrays, placed on the side walls of the microchannel, through V-shaped parylene-C obstacles. 3D-electrodes extruded along the z-direction provide uniformly distributed DEP force through channel depth. Cell suspension containing resistant and sensitive cancer cells with 1:100 ratio was continuously flown through the channel at a rate of 10 L/min. Detection was realized at 48.64 MHz, the cross-over frequency of sensitive K562 cells, at which sensitive cells flow with the fluid, while the resistant ones are trapped by positive DEP force. Device can be operated at considerably low voltages (<9 V-pp). This is achieved by means of a very thin (0.5 m) parylene coating on electrodes, providing the advantages offered by the isolation of electrodes from the sample, while the working voltage can still be kept low. Results prove that the presented DEP device can provide an efficient platform for the detection of multidrug resistance in leukemia, in a label-free manner.
机译:介电电泳(DEP)是一种用于在不均匀电场下根据不同大小和/或介电特性分离颗粒的技术,是一种有望在无标记,快速且有效的细胞操作和分离中应用的有前途的方法。在这项研究中,基于微机电系统的隔离3D电极DEP装置已被设计并实现,用于基于K562白血病细胞胞浆电导率的差异,对多药耐药性进行无标记检测。将细胞通过V形聚对二甲苯C障碍物流体动力学地聚焦到置于微通道侧壁上的3D电极阵列。沿z方向挤压的3D电极在通道深度内提供均匀分布的DEP力。含有抗性和敏感性癌细胞(比例为1:100)的细胞悬液以10 L / min的速度连续流过通道。在敏感的K562细胞的交叉频率48.64 MHz上实现了检测,敏感细胞随流体流动,而抗性细胞则被正DEP力捕获。设备可以在相当低的电压(<9 V-pp)下运行。这是通过电极上非常薄(0.5 m)的聚对二甲苯涂层实现的,具有将电极与样品隔离的优点,而工作电压仍可保持较低水平。结果证明,提出的DEP设备可以以无标记的方式为检测白血病中的多药耐药性提供有效的平台。

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