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An Integrated Biosensor System With a High-Density Microelectrode Array for Real-Time Electrochemical Imaging

机译:具有高密度微电极阵列的集成生物传感器系统,用于实时电化学成像

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Electrochemical methods have been shown to be advantageous to life sciences by supporting studies and discoveries in metabolism activities, DNA analysis, and neurotransmitter signaling. Meanwhile, the integration of Microelectrode Array (MEA) and the accessibility of CMOS technology permit high-density electrochemical sensing method. This paper describes an electrochemical imaging system equipped with a custom CMOS microchip. The microchip holds a 3.6 mm x 3.6 mm sensing area containing 16,064 Pt MEA, the associated 16,064 integrated read channels, and digital control circuits. The novel three-electrode system geometry with a 27.5 mu m spatial pitch enables cellular level chemical gradient imaging of bio-samples. The noise level of the on-chip read channel array allows amperometric detection of neurotransmitters such as norepinephrine (NE) with concentrations from 4 mu M to 512 mu M with 4.7 pA/mu M sensitivity (R-2 = 0.98). Electrochemical response to dissolved oxygen (DO) concentration was also characterized by deoxygenated deionized water containing 5% to 80% of the ambient oxygen concentrations with 86 pA/mg/L sensitivity (R-2 = 0.89). The system also demonstrated selectivity to different target analytes using cyclic voltammetry method to simultaneously detect NE and uric acid. Also, a custom indium tin oxide with deposited Au glass electrode was integrated into the microfluidic system to enable pH measurement, ensuring the viability of bio-samples during experiments. Electrochemical images confirm the spatiotemporal performance at four frames per second while maintaining the sensitivity to target analytes. Finally, the overall system is controlled and continuously monitored by a MATLAB-based custom user interface, which is optimized for real-time high spatiotemporal resolution chemical imaging.
机译:通过支持代谢活动,DNA分析和神经递质信号传导的研究和发现,已经证明了电化学方法对生命科学是有利的。同时,微电极阵列(MEA)的集成以及CMOS技术的可访问性允许高密度电化学传感方法。本文介绍了一种配备有自定义CMOS微芯片的电化学成像系统。 Microchip容纳3.6mm x 3.6mm的传感区域,含有16,064pt MEA,相关的16,064集成读取通道和数字控制电路。具有27.5μm空间间距的新型三电极系统几何形状使得能够进行生物样本的蜂窝水平化学梯度成像。片上读取通道阵列的噪声水平允许具有从4μm至512μm的浓度从4μm至512μm的细胞递质检测,具有4.7pa / mu m灵敏度(R-2 = 0.98)。对溶解氧(DO)浓度的电化学反应还表征,其特征在于含有5%至80%的环境氧浓度的脱氧去离子水,具有86Pa / mg / L敏感性(R-2 = 0.89)。该系统还使用循环伏安法测定对不同靶分析物的选择性,同时检测NE和尿酸。此外,将具有沉积Au玻璃电极的定制氧化铟锡集成到微流体系统中以使pH测量能够测量,确保生物样品在实验期间的活力。电化学图像确认每秒四个框架时的时空性能,同时保持对靶分析物的敏感性。最后,通过基于MATLAB的自定义用户界面控制和连续监测整体系统,这针对实时高时分辨率化学成像进行了优化。

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