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Multi-labs-on-a chip based optical detection for atto-molar cancer markers concentration

机译:基于多功能的基于芯片的芯片光学检测,用于Atto-molar癌症标记物浓度

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Demand on low-cost, highly miniaturized, rapid, selective and highly sensitive detection methods have become exigent and importunate in favor of low-profusion cancer markers detection. The detection of weakly expressed proteins and protein complexes in biological samples down to single-molecule level represents a major challenge due to the difficulty to achieve an acceptable level of signal-to-noise ratio. In addition, analysis of low abundance analytes can take several hours to days to give accurate results, and require bulky, expensive equipment. In this paper, highly miniaturized and integrated multi-labs-on-a-chip system has been developed comprising fluorescence CMOS detector, microfluidic channel, analyte manipulation/concentration system and novel amplification strategy for the binding event signal in the microfluidic system. The integrated compact and portable developed multi-biosensors CMOS system showed unprecedented sensitivity for ultra-low level in atto-molar (10–18 M) disease markers concentrations. The multi-biosensors were fabricated using CMOSP35 technology and detected numbers of samples with different concentrations; high to low and the results were recorded; accordingly.
机译:对低成本,高度小型化,快速,选择性和高敏感的检测方法的需求变得令人满意,重要的是,有利于低灌注癌症标志物检测。由于难以实现可接受的信噪比水平,在生物样品中检测到单分子水平的生物样品中的弱表达蛋白质和蛋白质复合物是主要的挑战。此外,对低丰度分析物的分析可能需要几个小时达到几天,以提供准确的结果,并且需要庞大,昂贵的设备。在本文中,已经开发了高度小型化和集成的多实验室芯片系统,其包括荧光CMOS检测器,微流体通道,分析物操纵/浓缩系统和微流体系统中的结合事件信号的新扩增策略。集成的紧凑型和便携式开发的多生物传感器CMOS系统对Atto-Molar(10-18米)疾病标志物浓度的超低水平显示出前所未有的敏感性。使用CMOSP35技术制造多生物传感器,并检测不同浓度的样品数量;高到低,结果被记录;因此。

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