Department of Mechanical Engineering , Southern Methodist University , Dallas , Texas 75205 , United States.
Departments of Urology and Pharmacology , University of Texas Southwestern Medical Center , Dallas , Texas 75390 , United States.
Anal Chem. 2018 Apr 3;90(7):4320-4327. doi: 10.1021/acs.analchem.7b05392. Epub 2018 Feb 14.
Dielectric spectroscopy (DS) is a noninvasive technique for real-time measurements of the impedance spectra of biological cells. DS enables characterization of cellular dielectric properties such as membrane capacitance and cytoplasmic conductivity. We have developed a lab-on-a-chip device that uses an electro-activated microwells array for capturing, DS measurements, and unloading of biological cells. Impedance measurements were conducted at 0.2 V in the 10 kHz to 40 MHz range with 6 s time resolution. An equivalent circuit model was developed to extract the cell membrane capacitance and cell cytoplasmic conductivity from the impedance spectra. A human prostate cancer cell line, PC-3, was used to evaluate the device performance. Suspension of PC-3 cells in low conductivity buffers (LCB) enhanced their dielectrophoretic trapping and impedance response. We report the time course of the variations in dielectric properties of PC-3 cells suspended in LCB and their response to sudden pH change from a pH of 7.3 to a pH of 5.8. Importantly, we demonstrated that our device enabled real-time measurements of dielectric properties of live cancer cells and allowed the assessment of the cellular response to variations in buffer conductivity and pH. These data support further development of this device toward single cell measurements.
介电谱(DS)是一种用于实时测量生物细胞阻抗谱的非侵入性技术。DS 能够表征细胞的介电特性,如膜电容和细胞质电导率。我们开发了一种片上实验室设备,该设备使用电激活的微井阵列来捕获、DS 测量和生物细胞的卸载。阻抗测量在 0.2 V 下进行,频率范围为 10 kHz 至 40 MHz,时间分辨率为 6 s。开发了一个等效电路模型,从阻抗谱中提取细胞膜电容和细胞质电导率。用人前列腺癌细胞系 PC-3 评估了该设备的性能。在低电导率缓冲液(LCB)中悬浮 PC-3 细胞可增强它们的介电泳捕获和阻抗响应。我们报告了悬浮在 LCB 中的 PC-3 细胞介电特性的时程变化及其对 pH 值从 7.3 突然变为 5.8 的缓冲液电导率和 pH 值变化的响应。重要的是,我们证明了我们的设备能够实时测量活癌细胞的介电特性,并能够评估细胞对缓冲液电导率和 pH 值变化的反应。这些数据支持该设备朝着单细胞测量的进一步发展。