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基于 CMOS 的 SE-ECL:一种小型化的电化学发光生物传感器。

SE-ECL on CMOS: a miniaturized electrochemiluminescence biosensor.

机构信息

Department of Bioengineering, McGill University, Montreal, QC, Canada.

Nanobiophotonics and Laser Microspectroscopy Center, Interdisciplinary Research Institute in Bio-Nano-Sciences, Babes-Bolyai University, T. Laurean 42, Cluj-Napoca 400271, Romania.

出版信息

Lab Chip. 2022 Mar 1;22(5):994-1005. doi: 10.1039/d1lc00905b.

Abstract

Biosensors exhibit high potential for the detection of analytes of interest at the point-of-need. Over the past two decades, the combination of novel biosensing systems - such as electrochemiluminescence (ECL) biosensors - and advances in microfluidic techniques has allowed the development of lab-on-a-chip devices with enhanced overall performance and simplified sample handling. However, recording data with conventional platforms requires advanced and complicated instruments, such as sensitive photodetectors coupled to microscopes, to capture the photons from the chemiluminescent reaction. In this work, we integrated microfluidic and luminol/hydrogen peroxide ECL systems on a complementary metal-oxide-semiconductor (CMOS) chip for sample handling and data collection on the same platform. This was achieved by the adaptation of a single electrode as an electrochemical transducer and a CMOS chip as a built-in detector. We demonstrated the application of this platform for the detection of uric acid (UA), a biomarker of gout disease. A linear detection range was observed from 25 to 300 μM, with a detection limit (LOD) as low as 26.09 μM. The device showed high reusability and reproducibility within the linear detection range while maintaining high selectivity for UA detection. The analytical performance has also been evaluated in simulated saliva and urine samples, demonstrating the potential utility in medical diagnosis at the point-of-need. Compared to other ECL imaging platforms, this device showed an eightfold increase in photon collection efficiency. Overall, this approach has promising potential as an inexpensive, portable, and efficient ECL platform for measuring analytes at the point-of-need.

摘要

生物传感器在即时检测中对目标分析物的检测具有很大的潜力。在过去的二十年中,新型生物传感系统(如电致化学发光(ECL)生物传感器)与微流控技术的进步相结合,使得具有增强整体性能和简化样品处理的芯片实验室设备得以发展。然而,使用传统平台记录数据需要先进而复杂的仪器,如与显微镜耦合的敏感光电探测器,以捕获化学发光反应产生的光子。在这项工作中,我们将微流控和鲁米诺/过氧化氢 ECL 系统集成在互补金属氧化物半导体(CMOS)芯片上,用于在同一平台上进行样品处理和数据采集。这是通过将单个电极适配为电化学换能器和 CMOS 芯片适配为内置探测器来实现的。我们展示了该平台在尿酸(UA)检测中的应用,UA 是痛风疾病的生物标志物。观察到从 25 到 300 μM 的线性检测范围,检测限(LOD)低至 26.09 μM。该设备在线性检测范围内表现出高可重复性和重现性,同时保持对 UA 检测的高选择性。该分析性能还在模拟唾液和尿液样本中进行了评估,证明了在即时医疗诊断中的潜在应用。与其他 ECL 成像平台相比,该设备的光子收集效率提高了八倍。总体而言,该方法具有作为一种廉价、便携和高效的即时检测分析物的 ECL 平台的巨大潜力。

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