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A CMOS MEMS-based Membrane-Bridge Nanomechanical Sensor for Small Molecule Detection

机译:基于CMOS MEMS的膜 - 桥纳米机械传感器,用于小分子检测

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Small molecule compounds are necessary to detect with high sensitivity since they may cause a strong effect on the human body even in small concentrations. But existing methods used to evaluate small molecules in blood are inconvenient, costly, time-consuming, and do not allow for portable usage. In response to these shortcomings, we introduce a complementary metal-oxide-semiconductor bio-microelectromechanical system (CMOS BioMEMS) based piezoresistive membrane-bridge (MB) sensor for detecting small molecule (phenytoin) concentrations as the demonstration. Phenytoin is one of anticonvulsant drugs licensed for the management of seizures, which has a narrow therapeutic window hence a level of concentration monitoring was needed. The MB sensor was designed to enhance the structural stability and increase the sensitivity, which its signal response increased 2-fold higher than that of the microcantilever-based sensor. The MB sensor was used to detect phenytoin in different concentrations from 5 to 100? μg/mL. The limit of detection of the sensor was 4.06?±?0.15? μg/mL and the linear detection range was 5–100? μg/mL, which was within the therapeutic range of phenytoin concentration (10–20? μg/mL). Furthermore, the MB sensor was integrated with an on-chip thermal effect eliminating modus and a reaction tank on a compact chip carrier for disposable utilization. The required amount of sample solution was only 10? μL and the response time of the sensor was about 25? minutes. The nano-mechanical MB sensing method with thermal effect compensation is specific, sensitive, robust, affordable and well reproducible; it is, therefore, an appropriate candidate for detecting small molecules.
机译:小分子化合物是用高敏感性检测的,因为它们可能在小浓度下可能对人体引起强烈影响。但用于评估血液中小分子的现有方法是不方便的,昂贵,耗时,并且不允许便携式使用。响应于这些缺点,我们引入了基于互补的金属氧化物半导体生物微机电机械系统(CMOS生物邮件)的压阻膜 - 桥(MB)传感器,用于检测小分子(苯妥林)浓度作为演示。 Phenytoin是用于癫痫发作管理的抗惊厥药物之一,其具有狭窄的治疗窗口,因此需要浓度监测水平。设计MB传感器以增强结构稳定性并提高灵敏度,其信号响应增加2倍高于基于微电路手的传感器的信号响应。 MB传感器用于检测不同浓度的苯妥英5-100? μg/ ml。传感器的检测限为4.06?±0.15? μg/ ml和线性检测范围为5-100? μg/ ml,其在治疗范围内的苯妥辛浓度(10-20×μg/ ml)内。此外,MB传感器与片上热效果集成,消除了在紧凑型芯片载体上的模式和反应箱进行一次性利用。所需量的样品溶液仅为10?传感器的μl和响应时间约为25?分钟。具有热效应补偿的纳米机械MB传感方法是特异性的,敏感,鲁棒,实惠且可重复良好的;因此,检测小分子的适当候选者。

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