利用介电泳力控制细胞的破坏。

A Menachery, R Pethig
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引用次数: 57

摘要

在Jurkat T细胞和HL60白血病细胞的介电电泳(DEP)实验中,观察到影响细胞破坏数量的主要因素,即交流电压频率和幅度的测量结果。采用互指和四极几何微电极。已经确定了应避免或利用的场频窗口,这取决于是否要最小化细胞损伤或是否是期望的目标。该频率窗口的宽度和位置取决于细胞类型,由细胞大小、形态和介电特性定义,并由两个特征频率限制。这些频率是DEP交叉频率,细胞从负DEP过渡到正DEP,以及一个由时间常数决定的频率,该时间常数控制着细胞膜上诱导的场的频率依赖性。当在这个频率窗口中工作时,对于本工作中使用的微电极设计,通过确保电池不被正DEP引导到产生超过30-40 kV/m的电场的电极边缘,可以最大限度地减少电池的破坏。或者,可以利用该场-频率窗口选择性地破坏细胞混合物中的特定细胞类型。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Controlling cell destruction using dielectrophoretic forces.

Measurements are reported of the main factors, namely the AC voltage frequency and magnitude, that were observed to influence the number of cells destroyed during dielectrophoresis (DEP) experiments on Jurkat T cells and HL60 leukemia cells. Microelectrodes of interdigitated and quadrupolar geometries were used. A field-frequency window has been identified that should be either avoided or utilised, depending on whether or not cell damage is to be minimised or is a desired objective. The width and location of this frequency window depends on the cell type, as defined by cell size, morphology and dielectric properties, and is bounded by two characteristic frequencies. These frequencies are the DEP cross-over frequency, where a cell makes the transition from negative to positive DEP, and a frequency determined by the time constant that controls the frequency dependence of the field induced across the cell membrane. When operating in this frequency window, and for the microelectrode designs used in this work, cell destruction can be minimised by ensuring that cells are not directed by positive DEP to electrode edges where fields exceeding 30-40 kV/m are generated. Alternatively, this field-frequency window can be exploited to selectively destroy specific cell types in a cell mixture.

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