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In-Flow Dielectrophoresis Sensor for Measuring the Dielectric Spectrum of Single Cells: Viable and Non-viable Cells

机译:用于测量单细胞的介电光谱的流动介电泳传感器:可行和不活性细胞

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The dielectric properties of biological cells can be used to gain information on their physiology and morphology. We present a wideband dielectrophoresis (DEP) sensor that measures the dielectric spectrum of single cells while they flow through a microfluidic channel. We describe how an asymmetric co-planar electrode array can be used to apply DEP actuation to individual cells and then accurately measure their translation. This enables determination of the equivalent complex dielectric permittivity of the cell. Measurement over the beta-dispersion (interfacial) frequency range then facilitates determination of the cell's structural dimensions and the dielectric properties of its compartments. We measure the dielectric spectrums of viable and non-viable Chinese hamster ovary (CHO) cells, as induced through starvation, and show how they are related to changes in the cell's membrane permittivity and cytoplasm conductivity.
机译:生物细胞的介电性能可用于获得其生理学和形态学的信息。我们介绍了一种宽带介质电泳(DEP)传感器,其测量单细胞的介电光谱,同时流过微流体通道。我们描述了非对称共平面电极阵列如何用于将DEP致动施加到单个细胞,然后精确地测量它们的翻译。这使得能够确定电池的等同复合介电常数。然后,测量β-色散(界面)频率范围,然后促进细胞的结构尺寸和其隔室的介电性能。我们测量通过饥饿诱导的可行性和不可行的中国仓鼠卵巢(CHO)细胞的介质谱,并展示它们与细胞膜介电常数和细胞质电导率的变化有关。

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