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A freestanding microfluidic-based thermocouple biosensor for enzyme-catalyzed reaction analysis

机译:独立的基于微流体的热电偶生物传感器,用于酶催化反应分析

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This research reports a multifunctional thermal biosensor that has thermocouple structures integrated with freestanding microfluidic channels for bio-sensing based on enzyme-catalyzed reactions. The free-standing SU-8 polymer-based microfluidic measurement chamber allows sensitive measurement of small volumes of liquid samples and reduces heat loss to improve the sensitivity. The fabricated thermocouple biosensor is capable of enzyme-catalyzed reaction detection for healthcare applications. Reactive enzymes are immobilized on microspheres packed in the chambers. The fabricated thermocouple biosensor shows a sensitivity of approximately 0.5 V/W and a thermal time constant of less than 100ms. The Seebeck-coefficient of thermocouple biosensor obtains a sensitivity of 1.1mV/°C with the measurement of IR thermometry. The results demonstrate that the sensor was capable of enzyme-catalyzed reaction detection for healthcare application.
机译:这项研究报告了一种多功能热生物传感器,该传感器具有热电偶结构,该热电偶结构与独立的微流体通道相集成,可基于酶催化反应进行生物传感。基于SU-8聚合物的独立式微流体测量室可对少量液体样品进行灵敏的测量,并减少了热量损失,从而提高了灵敏度。所制造的热电偶生物传感器能够用于医疗保健应用中的酶催化反应检测。反应性酶被固定在包装在腔室内的微球上。制成的热电偶生物传感器的灵敏度约为0.5 V / W,热时间常数小于100ms。通过红外测温仪的测量,热电偶生物传感器的塞贝克系数获得1.1mV /°C的灵敏度。结果表明该传感器能够用于医疗保健应用中的酶催化反应检测。

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