Galvanically decoupled impedance spectroscopy for biological high-throughput-screening in microtiter plates

M. Hofmann, R. Schlierf, W. Mokwa, U. Schnakenberg, F. Kensy, J. Buchs
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引用次数: 4

Abstract

A flew method for measuring the impedance spectra of biological cell cultures in microtiter plates (MTP) is proposed. The application offers the opportunity of measuring the complex impedance of aqueous solutions without galvanic contact. A thin polyimide film is used as dielectric layer between two metal electrodes and the solutions. The impedance of these cells or aqueous solutions is determined by measuring the impedance of the whole application and subtracting the constant capacitance of the dielectric layer. This calculation is based on a newly developed equivalent electrical circuit. To show the applicability of the sensor, yeast cells (Hansenula polymorpha wt) are monitored at frequencies between 500 kHz and 15 MHz. The results demonstrate the ability of the sensor to measure even the relaxation step of the capacitance of living cells. Because of possible side effects, the influence of aqueous solutions on the polyimide film in general is investigated as well
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微滴板中生物高通量筛选的电偶解耦阻抗谱
提出了一种测定微滴板中生物细胞培养阻抗谱的简便方法。该应用提供了测量无电接触水溶液的复杂阻抗的机会。在两个金属电极和溶液之间使用一层聚酰亚胺薄膜作为介电层。这些电池或水溶液的阻抗是通过测量整个应用的阻抗并减去介电层的恒定电容来确定的。这个计算是基于一种新开发的等效电路。为了显示传感器的适用性,酵母细胞(Hansenula polymorpha wt)在500 kHz和15 MHz之间的频率下进行监测。结果表明,该传感器甚至可以测量活细胞电容的弛豫步长。由于可能的副作用,水溶液对聚酰亚胺薄膜的影响一般也进行了研究
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