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Quantification of the specific membrane capacitance of single cells using a microfluidic device and impedance spectroscopy measurement

机译:使用微流控装置和阻抗谱测量法量化单细胞的比膜电容

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摘要

The specific membrane capacitance (SMC) is an electrical parameter that correlates with both the electrical activity and morphology of the plasma membrane, which are physiological markers for cellular phenotype and health. We have developed a microfluidic device that enables impedance spectroscopy measurements of the SMC of single biological cells. Impedance spectra induced by single cells aspirated into the device are captured over a moderate frequency range (5 kHz–1 MHz). Maximum impedance sensitivity is achieved using a tapered microfluidic channel, which effectively routes electric fields across the cell membranes. The SMC is extracted by curve-fitting impedance spectra to an equivalent circuit model. From our measurement, acute myeloid leukemia (AML) cells are found to exhibit larger SMC values in hypertonic solutions as compared with those in isotonic solutions. In addition, AML cell phenotypes (AML2 and NB4) exhibiting varying metastatic potential yield distinct SMC values (AML2: 16.9 ± 1.9 mF/m2 (n = 23); NB4: 22.5 ± 4.7 mF/m2 (n = 23)). Three-dimensional finite element simulations of the microfluidic device confirm the feasibility of this approach.
机译:特定膜电容(SMC)是与质膜的电活动和形态相关的电参数,质膜是细胞表型和健康的生理指标。我们已经开发出一种微流体装置,可以对单个生物细胞的SMC进行阻抗谱测量。吸入设备中的单细胞诱导的阻抗谱在中等频率范围(5 kHz-1 MHz)内捕获。使用锥形微流体通道可实现最大的阻抗灵敏度,该通道可有效地将电场引导穿过细胞膜。通过将阻抗谱曲线拟合到等效电路模型来提取SMC。根据我们的测量,与等渗溶液相比,高渗溶液中的急性髓细胞白血病(AML)细胞显示出更大的SMC值。此外,表现出不同转移潜能的AML细胞表型(AML2和NB4)产生不同的SMC值(AML2:16.9±1.9 mF / m 2 (n = 23); NB4:22.5±±4.7 mF / m 2 (n = 23))。微流体装置的三维有限元模拟证实了这种方法的可行性。

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