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A 16 16 CMOS Capacitive Biosensor Array Towards Detection of Single Bacterial Cell

机译:用于检测单个细菌细胞的16 16 CMOS电容式生物传感器阵列。

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We present a 16 16 CMOS biosensor array aiming at impedance detection of whole-cell bacteria. Each pixel comprises high-sensitive passivated microelectrodes connected to an innovative readout interface based on charge sharing principle for capacitance-to-voltage conversion and subthreshold gain stage to boost the sensitivity. Fabricated in a CMOS process, the capacitive array was experimentally shown to perform accurate dielectric measurements of the electrolyte up to electrical conductivities of 0.05 S/m, with maximal sensitivity of 55 mV/fF and signal-to-noise ratio (SNR) of 37 dB. As biosensing proof of concept, real-time detection of Staphylococcus epidermidis binding events was experimentally demonstrated and provides detection limit of ca. 7 bacteria per pixel and sensitivity of 2.18 mV per bacterial cell. Models and simulations show good matching with experimental results and provide a comprehensive analysis of the sensor and circuit system. Advantages, challenges and limits of the proposed capacitive biosensor array are finally described with regards to literature. With its small area and low power consumption, the present capacitive array is particularly suitable for portable point-of-care (PoC) diagnosis tools and lab-on-chip (LoC) systems.
机译:我们提出了一种16 16 CMOS生物传感器阵列,旨在对全细胞细菌进行阻抗检测。每个像素均包括高灵敏度钝化微电极,该钝化微电极连接到基于电荷共享原理的创新读出接口,以实现电容到电压转换以及亚阈值增益级,以提高灵敏度。实验证明,采用CMOS工艺制造的电容式阵列可以对电解质进行精确的介电测量,电导率高达0.05 S / m,最大灵敏度为55 mV / fF,信噪比(SNR)为37 D b。作为概念的生物传感证据,通过实验证明了表皮葡萄球菌结合事件的实时检测,并提供了约200mg / ml的检测限。每个像素7个细菌,每个细菌细胞的灵敏度为2.18 mV。模型和仿真显示出与实验结果的良好匹配,并提供了传感器和电路系统的全面分析。最后参考文献描述了所提出的电容性生物传感器阵列的优点,挑战和局限性。由于其面积小且功耗低,所以本电容阵列特别适用于便携式即时诊断(PoC)诊断工具和芯片实验室(LoC)系统。

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