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Continuous, Real-time Monitoring Of Cocaine In Undilutedblood Serum Via A Microfluidic, Electrochemicalrnaptamer-based Sensor

机译:通过基于微流电化学电化学传感器的连续,实时监测未稀释血液中的可卡因

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摘要

The development of a biosensor system capable of continuous, real-time measurement of small-molecule analytes directly in complex, unprocessed aqueous samples has been a significant challenge, and successful implementation has been achieved for only a limited number of targets. Toward a general solution to this problem, we report here the Microfluidic Electrochemical Aptamer-based Sensor (MECAS) chip wherein we integrate target-specific DNA aptamers that fold, and thus generate an electrochemical signal, in response to the analyte with a microfluidic detection system. As a model, we demonstrate the continuous, real-time (~1 min time resolution) detection of the small-molecule drug cocaine at near physiological, low micromolar concentrations directly in undiluted, otherwise unmodified blood serum. We believe our approach of integrating folding-based electrochemical sensors with miniaturized detection systems may lay the groundwork for the real-time, point-of-care detection of a wide variety of molecular targets.
机译:能够直接在复杂的,未经处理的水性样品中连续,实时地测量小分子分析物的生物传感器系统的开发一直是一项重大挑战,并且仅针对有限数量的目标成功实现了这一目标。为了解决该问题,我们在这里报告了基于微流体电化学适体的传感器(MECAS)芯片,其中我们整合了目标特异性DNA适体,该适体折叠起来,从而产生响应于分析物的微流体检测系统的电化学信号。作为模型,我们证明了直接在未稀释的,否则未修饰的血清中以接近生理的低微摩尔浓度连续,实时(〜1分钟的时间分辨率)检测小分子可卡因。我们相信,将基于折叠的电化学传感器与小型化检测系统集成在一起的方法,可以为各种分子目标的实时即时检测提供基础。

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