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Dielectric spectroscopy as a viable biosensing tool for cell and tissue characterization and analysis

机译:介电谱法是用于细胞和组织表征和分析的可行生物传感工具

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摘要

The use of dielectric spectroscopy to carry out real time observations of cells and to extract a wealth of information about their physiological properties has expanded in recent years. This popularity is due to the simple, easy to use, non-invasive and real time nature of dielectric spectroscopy. The ease of integrating dielectric spectroscopy with microfluidic devices has allowed the technology to further expand into biomedical research. Dielectric spectra are obtained by applying an electrical signal to cells, which is swept over a frequency range. This review covers the different methods of interpreting dielectric spectra and progress made in applications of impedance spectroscopy for cell observations. First, methods of obtaining specific electrical properties of cells (cell membrane capacitance and cytoplasm conductivity) are discussed. These electrical properties are obtained by fitting the dielectric spectra to different models and equations. Integrating models to reduce the effects of the electrical double layer are subsequently covered. Impedance platforms are then discussed including electrical cell substrate impedance sensing (ECIS). Categories of ECIS systems are divided into microelectrode arrays, interdigitated electrodes and those that allow differential ECIS measurements. Platforms that allow single cell and sub-single cell measurements are then discussed. Finally, applications of impedance spectroscopy in a range of cell observations are elaborated. These applications include observing cell differentiation, mitosis and the cell cycle and cytotoxicity/cell death. Future applications such as drug screening and in point of care applications are then covered.
机译:近年来,使用介电光谱法进行细胞的实时观察并提取有关其生理特性的大量信息已得到广泛应用。这种普及是由于介电谱的简单,易用,非侵入性和实时性。介电谱与微流控设备集成的便捷性使该技术得以进一步扩展到生物医学研究中。介电谱是通过将电信号施加到在一定频率范围内扫描的细胞而获得的。这篇综述涵盖了解释介电谱的不同方法,以及在用于细胞观察的阻抗谱学应用中取得的进展。首先,讨论了获得细胞特定电特性(细胞膜电容和细胞质电导率)的方法。通过将介电谱拟合到不同的模型和方程式可获得这些电性能。随后介绍了减少电双层影响的集成模型。然后讨论了阻抗平台,包括电池基底阻抗感测(ECIS)。 ECIS系统的类别分为微电极阵列,叉指电极和允许差分ECIS测量的电极。然后讨论允许单小区和亚单小区测量的平台。最后,阐述了阻抗谱在细胞观察范围内的应用。这些应用包括观察细胞分化,有丝分裂以及细胞周期和细胞毒性/细胞死亡。然后介绍了诸如药物筛选和即时护理应用等未来应用。

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