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首页> 外文期刊>Journal of Analytical Science and Technology >A portable standalone wireless electric cell-substrate impedance sensing (ECIS) system for assessing dynamic behavior of mammalian cells
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A portable standalone wireless electric cell-substrate impedance sensing (ECIS) system for assessing dynamic behavior of mammalian cells

机译:用于评估哺乳动物细胞动态行为的便携式独立无线电气电池基板阻抗传感(ECIS)系统

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摘要

In this study, we have developed a wireless, portable, standalone, and simple electric cell-substrate impedance sensing (ECIS) system to analyze in-depth functional aspects of cellular functions on the surface of a co-planar metal electrode coated on conventional glass substrate using a low-cost circuitry and correlated it with an equivalent electrical circuit (EEC) model. Low-cost circuitry was used for studying the dynamic behavior of the mouse myoblast cells (C2C12) in a culture chamber. Further, the developed ECIS system was connected with 8-bit Arduino UNO microcontroller board for establishing a compact sized measuring unit, which can be placed inside a CO_(2)incubator to provide proper environmental condition for the biological cells during the entire measuring time. Integrating ZigBee RF module with the 8-bit Arduino UNO microcontroller board provides a wireless communication network. Theoretical calculation of the lumped-elemental electrical parameters associated with cell-electrolyte interface and metal-electrolyte interface was calculated. The calculation was performed by fitting the experimental impedance data to EEC model using least mean square method to determine the dynamic and vital functions of the mammalian cells such as proliferation (in real-time) with a change in intrinsic electrical parameters associated at any particular time point. Impedance measurements and the lumped-elemental electrical parameter were correlated with the respective microscopic images. The developed ECIS system was found to enable measuring of the extent of cellular proliferation over time. The compactness of the developed ECIS system integrated with the ZigBee RF module and the 8-bit Arduino UNO microcontroller board facilitates its utilization even when placed in the CO_(2)incubator for a prolonged time.
机译:在本研究中,我们开发了一种无线,便携式,独立和简单的电池基板阻抗检测(ECIS)系统,用于分析涂布在常规玻璃上的共平面金属电极表面上的蜂窝功能的深入功能方面基板使用低成本电路并将其与等效电路(EEC)模型相关联。低成本电路用于研究小鼠肌细胞细胞(C2C12)在培养室中的动态行为。此外,开发的ECIS系统与8位Arduino Uno微控制器连接,用于建立紧凑型测量单元,其可以放置在CO_(2)培养箱内,以在整个测量时间内为生物细胞提供适当的环境条件。将ZigBee RF模块与8位Arduino Uno微控制器集成,提供无线通信网络。计算了与细胞 - 电解质界面和金属 - 电解质界面相关的集体元素电参数的理论计算。通过将实验阻抗数据拟合到EEC模型来使用最小均方方法来执行计算,以确定哺乳动物细胞如增殖(实时)的动态和重要功能,随着在任何特定时间相关的内在电气参数的变化观点。阻抗测量和集合元素电气参数与各个微观图像相关。发现发达的ECIS系统能够测量细胞增殖程度随时间的程度。与ZigBee RF模块和8位Arduino Uno微控制器集成的发达的ECIS系统的紧凑性即使在延长时间内存在CO_(2)培养箱中,也有利于其利用。

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