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首页> 外文期刊>Biosensors & Bioelectronics: The International Journal for the Professional Involved with Research, Technology and Applications of Biosensers and Related Devices >Real-time, multiplexed electrochemical DNA detection using an active complementary metal-oxide-semiconductor biosensor array with integrated sensor electronics
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Real-time, multiplexed electrochemical DNA detection using an active complementary metal-oxide-semiconductor biosensor array with integrated sensor electronics

机译:使用带有集成传感器电子器件的有源互补金属氧化物半导体生物传感器阵列进行实时,多重电化学DNA检测

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摘要

Optical biosensing based on fluorescence detection has arguably become the standard technique for quantifying extents of hybridization between surface-immobilized probes and fluorophore-labeled analyte targets in DNA microarrays. However, electrochemical detection techniques are emerging which could eliminate the need for physically bulky optical instrumentation, enabling the design of portable devices for point-of-care applications. Unlike fluorescence detection, which can function well using a passive substrate (one without integrated electronics), multiplexed electrochemical detection requires an electronically active substrate to analyze each array site and benefits from the addition of integrated electronic instrumentation to further reduce platform size and eliminate the electromagnetic interference that can result from bringing non-amplified signals off chip. We report on an active electrochemical biosensor array, constructed with a standard complementary metal-oxide-semiconductor (CMOS) technology, to perform quantitative DNA hybridization detection on chip using targets conjugated with ferrocene redox labels. A 4 x 4 array of gold working electrodes and integrated potentiostat electronics, consisting of control amplifiers and current-input analog-to-digital converters, on a custom-designed 5 mm x 3 mm CMOS chip drive redox reactions using cyclic voltammetry, sense DNA binding, and transmit digital data off chip for analysis. We demonstrate multiplexed and specific detection of DNA targets as well as real-time monitoring of hybridization, a task that is difficult, if not impossible, with traditional fluorescence-based microarrays.
机译:可以说,基于荧光检测的光学生物传感已经成为量化DNA微阵列中表面固定探针与荧光团标记的分析物靶标之间杂交程度的标准技术。但是,正在出现电化学检测技术,该技术可以消除对体积庞大的光学仪器的需求,从而可以设计用于现场护理应用的便携式设备。与荧光检测不同,荧光检测可以使用无源基板(一个没有集成电子元件)很好地工作,而多重电化学检测则需要一个电子有源基板来分析每个阵列位置,并受益于集成电子仪器的添加,以进一步减小平台尺寸并消除电磁干扰。将未放大的信号移出芯片可能会产生干扰。我们报告了一种主动电化学生物传感器阵列,该阵列采用标准的互补金属氧化物半导体(CMOS)技术构建,可使用与二茂铁氧化还原标记共轭的靶标在芯片上进行定量DNA杂交检测。定制设计的5 mm x 3 mm CMOS芯片上的4 x 4阵列金工作电极和集成稳压器电子元件,包括控制放大器和电流输入模数转换器,使用循环伏安法感测DNA来驱动氧化还原反应绑定,并从芯片外传输数字数据进行分析。我们展示了DNA靶标的多重和特异性检测以及杂交的实时监控,这是使用传统的基于荧光的微阵列所难以完成的任务,即使不是不可能。

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