首页> 美国卫生研究院文献>BioMed Research International >Microelectrical Impedance Spectroscopy for the Differentiation between Normal and Cancerous Human Urothelial Cell Lines: Real-Time Electrical Impedance Measurement at an Optimal Frequency
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Microelectrical Impedance Spectroscopy for the Differentiation between Normal and Cancerous Human Urothelial Cell Lines: Real-Time Electrical Impedance Measurement at an Optimal Frequency

机译:微电阻抗谱用于区分正常和癌性人类尿道上皮细胞系:实时电阻抗测量的最佳频率

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摘要

Purpose. To distinguish between normal (SV-HUC-1) and cancerous (TCCSUP) human urothelial cell lines using microelectrical impedance spectroscopy (μEIS). Materials and Methods. Two types of μEIS devices were designed and used in combination to measure the impedance of SV-HUC-1 and TCCSUP cells flowing through the channels of the devices. The first device (μEIS-OF) was designed to determine the optimal frequency at which the impedance of two cell lines is most distinguishable. The μEIS-OF trapped the flowing cells and measured their impedance at a frequency ranging from 5 kHz to 1 MHz. The second device (μEIS-RT) was designed for real-time impedance measurement of the cells at the optimal frequency. The impedance was measured instantaneously as the cells passed the sensing electrodes of μEIS-RT. Results. The optimal frequency, which maximized the average difference of the amplitude and phase angle between the two cell lines (p < 0.001), was determined to be 119 kHz. The real-time impedance of the cell lines was measured at 119 kHz; the two cell lines differed significantly in terms of amplitude and phase angle (p < 0.001). Conclusion. The μEIS-RT can discriminate SV-HUC-1 and TCCSUP cells by measuring the impedance at the optimal frequency determined by the μEIS-OF.
机译:目的。使用微电阻抗谱(μEIS)区分正常(SV-HUC-1)和癌性(TCCSUP)人尿路上皮细胞系。材料和方法。设计了两种类型的μEIS器件,并结合使用它们来测量流过器件通道的SV-HUC-1和TCCSUP单元的阻抗。设计第一个设备(μEIS-OF)以确定最能区分两个细胞系阻抗的最佳频率。 μEIS-OF捕获流动的细胞并在5 kHz至1 MHz的频率范围内测量其阻抗。第二个设备(μEIS-RT)设计用于在最佳频率下实时测量电池的阻抗。当细胞通过μEIS-RT的传感电极时,即刻测量阻抗。结果。最佳频率被确定为119 kHz,该频率使两条细胞系之间的幅度和相位角的平均差最大(p <0.001)。在119 kHz下测量细胞系的实时阻抗;两条细胞系在幅度和相位角方面存在显着差异(p <0.001)。结论。通过在由μEIS-OF确定的最佳频率下测量阻抗,μEIS-RT可以区分SV-HUC-1和TCCSUP细胞。

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