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通过与 IDES 技术集成的阻抗谱实现无标记生物传感器。

Towards the realization of label-free biosensors through impedance spectroscopy integrated with IDES technology.

机构信息

Health Sciences Department, University of Molise, Campobasso, Italy.

出版信息

Eur Biophys J. 2012 Feb;41(2):249-56. doi: 10.1007/s00249-011-0782-4. Epub 2012 Jan 12.

Abstract

Impedance spectroscopy (IS) is a powerful technique for analysis of the complex electrical impedance of a large variety of biological systems, because it is sensitive both to surface phenomena and to changes of bulk properties. A simple and convenient method of analysis of cell properties by IS is described. An interdigitated electrodes configuration was used for the measurements; human epithelial cells were grown on the device to investigate the complex dielectric response as a function of frequency, in order to test the suitability of the device for use as a label-free biosensor. To test the ability of the device to detect channels in the cell membrane, the effect of drugs known to affect membrane integrity was also investigated. The frequency response of the admittance (i.e. the reciprocal of the impedance) can be well fitted by a model based on very simple assumptions about the cells coating the device surface and the current flow; from the calculations, membrane-specific capacitance and information about cell adhesion can be inferred. These preliminary efforts have shown that our configuration could lead to a label-free non-invasive technique for biosensing and cellular behavior monitoring which might prove useful in investigation of the basic properties of cells and the effect of drugs by estimation of some fundamental properties and modification of the electrical characteristics of the device.

摘要

阻抗谱(IS)是一种强大的技术,可用于分析各种生物系统的复杂电阻抗,因为它对表面现象和体性质变化都很敏感。本文描述了一种通过 IS 分析细胞特性的简单方便的方法。采用叉指电极结构进行测量;在器件上培养人上皮细胞,以研究复介电响应随频率的变化,以测试该器件作为无标记生物传感器的适用性。为了测试该器件检测细胞膜通道的能力,还研究了已知影响膜完整性的药物的作用。导纳(即阻抗的倒数)的频率响应可以很好地拟合基于对涂覆在器件表面的细胞和电流流动的非常简单假设的模型;通过计算,可以推断出膜的比电容和细胞粘附的信息。这些初步努力表明,我们的配置可以实现无标记的非侵入式生物传感和细胞行为监测技术,这可能有助于通过估计一些基本特性和改变器件的电特性来研究细胞的基本特性和药物的作用。

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