Kaler K V, Jones T B
Department of Electrical Engineering, University of Calgary, Alberta, Canada.
Biophys J. 1990 Feb;57(2):173-82. doi: 10.1016/S0006-3495(90)82520-0.
In this paper we have utilized the principle of dielectrophoresis (DEP) to develop an apparatus to stably levitate single biological cells using a digital feedback control scheme. Using this apparatus, the positive DEP spectra of both Canola plant protoplast and ligament fibroblast cells have been measured over a wide range of frequencies (1 kHz to 50 MHz) and suspending medium conductivities (11-800 muS/cm). The experimental data thus obtained have been interpreted in terms of a simple spherical cell model. Furthermore, utilizing such a model, we have shown that various cellular parameters of interest can be readily obtained from the measured DEP levitation spectrum. Specifically, the effective membrane capacitance of single cells has been determined. Values of 0.47 +/- 0.03 muF/cm2 for Canola protoplasts and 1.52 +/- 0.26 muF/cm2 for ligament fibroblasts thus obtained are consistent with those determined by other existing electrical methods.
在本文中,我们利用介电泳(DEP)原理,采用数字反馈控制方案开发了一种用于稳定悬浮单个生物细胞的装置。使用该装置,在很宽的频率范围(1 kHz至50 MHz)和悬浮介质电导率(11 - 800 μS/cm)内,测量了油菜植物原生质体和韧带成纤维细胞的正介电泳谱。由此获得的实验数据已根据一个简单的球形细胞模型进行了解释。此外,利用这样一个模型,我们表明可以从测量的DEP悬浮谱中轻松获得各种感兴趣的细胞参数。具体而言,已确定了单个细胞的有效膜电容。由此获得的油菜原生质体的膜电容值为0.47±0.03 μF/cm²,韧带成纤维细胞的膜电容值为1.52±0.26 μF/cm²,这与通过其他现有电学方法测定的值一致。