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Eyeglasses-based tear biosensing system: Non-invasive detection of alcohol, vitamins and glucose

机译:基于眼镜的泪液生物传感系统:无侵入性检测酒精,维生素和葡萄糖

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摘要

We report on a wearable tear bioelectronic platform, integrating a microfluidic electrochemical detector into an eyeglasses nose-bridge pad, for non-invasive monitoring of key tear biomarkers. The alcohol-oxidase (AOx) biosensing fluidic system allowed real-time tear collection and direct alcohol measurements in stimulated tears, leading to the first wearable platform for tear alcohol monitoring. Placed outside the eye region this fully wearable tear-sensing platform addresses drawbacks of sensor systems involving direct contact with the eye as the contact lenses platform. Integrating the wireless electronic circuitry into the eyeglasses frame thus yielded a fully portable, convenient-to-use fashionable sensing device. The tear alcohol sensing concept was demonstrated for monitoring of alcohol intake in human subjects over multiple drinking courses, displaying good correlation to parallel BAC measurements. We also demonstrate for the first time the ability to monitor tear glucose outside the eye and the utility of wearable devices for monitoring vitamin nutrients in connection to enzymatic flow detector and rapid voltammetric scanning, respectively. These developments pave the way to build an effective eyeglasses system capable of chemical tear analysis.
机译:我们报告了一种可佩戴的撕裂生物电解平台,将微流体电化学探测器集成到眼镜鼻梁垫中,用于关键撕裂生物标志物的非侵入性监测。醇氧化酶(AOX)生物传感流体系统允许实时撕裂收集并在刺激的泪液中直接饮酒测量,从而导致第一个可穿戴平台用于撕裂酒精监测。放置在眼睛区域外,这种全佩戴撕裂的撕裂平台解决了传感器系统的缺点,涉及与眼睛的直接接触为隐形眼镜平台。因此,将无线电子电路集成到眼镜框架中,因此产生了完全便携式,方便的时尚感测装置。撕裂醇传感概念被证明用于监测多个饮用课程的人类受试者中的酒精摄入量,显示与平行BAC测量的良好相关性。我们还证明了第一次监测眼睛外部撕裂葡萄糖的能力以及可穿戴设备的效用,用于监测与酶流量探测器和快速伏安扫描相关的维生素营养素。这些发展铺设了构建一种能够进行化学撕裂分析的有效眼镜系统的方法。

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