用CMOS集成阻抗-频率转换器检测细胞粘附

A. Mucha, M. Schienle, D. Schmitt-Landsiedel
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引用次数: 11

摘要

通过阻抗测量感应细胞粘附为监测体外细胞培养提供了一种通用且易于获取的方法。在这项工作中,我们提出了一种集成了生物相容性平面表面电极的CMOS阻抗-频率转换器,以制造一种紧凑而坚固的传感器芯片,用于体外细胞监测。该系统的特点是8×8阵列的单独可寻址电极连接到四个阻抗-频率转换器电路与方波输出。阻抗-频率转换器电路由一个可切换的恒流源、两个比较器和用于寻址像素阵列和产生控制信号的相关逻辑组成。在设计电极和电路元件时,必须特别注意保持电极上的电流密度和极化电压足够低,以避免损坏电池或引发不必要的电化学反应。为此,采用有限元模拟优化电极布局和电路参数,使电极电流保持在100 nA以下。我们给出了电池的测量结果,证明了系统的成功运行,并与电极和电池阻抗的模型很好地吻合。
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Sensing cellular adhesion with a CMOS integrated impedance-to-frequency converter
Sensing cellular adhesion via impedance measurements provides a versatile and easily accessible means for monitoring in-vitro cell cultures. In this work we present a CMOS impedance-to-frequency converter integrated with biocompatible planar surface electrodes to make a compact and robust sensor chip for in-vitro cell monitoring. The system features an 8×8 array of individually addressable electrodes connected to four impedance-to-frequency converter circuits with square wave output. The impedance-to-frequency converter circuits consist of a switchable constant current source, two comparators, and associated logic for addressing the pixel array and generating control signals. In designing the electrodes and circuit components, special attention had to be paid to keeping the current density and polarization voltage at the electrode low enough to avoid damaging the cells or triggering unwanted electrochemical reactions. To this end, FEM simulation was used to optimize electrode layout and electrical circuit parameters, keeping the electrode current below 100 nA. We present measurement results with cells that demonstrate the successful operation of the system and show good agreement with models of the electrode and cell impedances.
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