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 >CLASP (Continuous lifestyle awareness through sweat platform): A novel sensor for simultaneous detection of alcohol and glucose from passive perspired sweat
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CLASP (Continuous lifestyle awareness through sweat platform): A novel sensor for simultaneous detection of alcohol and glucose from passive perspired sweat

机译:扣(连续的生活方式通过汗水平台发布):一种新型传感器,用于同时检测来自被动出汗汗的酒精和葡萄糖

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摘要

Wearable-IOT based low-cost platforms can enable dynamic lifestyle monitoring through enabling promising and exciting opportunities for wellness and chronic-disease management in personalized environments. Diabetic and pre-diabetic populations can modulate their alcohol intake by tracking their glycemic content continuously to prevent health risks through these platforms. We demonstrate the first technological proof of a combinatorial biosensor for continuous, dynamic monitoring of alcohol and glucose in ultra-low volumes (1-5 mu L) of passive perspired sweat towards developing a wearable-IOT based platform. Non-invasive biosensing in sweat is achieved by a unique gold-zinc oxide (ZnO) thin film electrode stack fabricated on a flexible substrate suitable for wearable applications. The active ZnO sensing region is immobilized with enzyme complexes specific for the detection of alcohol and glucose through non-faradaic electrochemical impedance spectroscopy (EIS) and chronoamperometry (CA). Biomolecular interactions occurring at the electrode-sweat interface are represented by the impedance and capacitive current changes in response to charge modulations arising in the double layer. We also report the detection of alcohol concentrations of 0.01-100 mg/dl and glucose concentrations of 0.01-50 mg/dl present in synthetic sweat and perspired human sweat. The limit of detection obtained for alcohol and glucose was found to be 0.1 mg/dl in perspired human sweat. Cross-reactivity studies revealed that glucose and alcohol did not show any signal response to cross-reactive molecules. Furthermore, the stable temporal response of the combinatorial biosensor on continuous exposure to passive perspired human sweat spiked with alcohol and glucose over a 120-min duration was demonstrated.
机译:可穿戴物体基于IOT的低成本平台可以通过在个性化环境中为健康和慢性疾病管理提供有前途和令人兴奋的机会来实现动态的生活方式监控。糖尿病和糖尿病患者群可以通过持续跟踪它们的血糖含量来调节其酒精摄入量,以防止通过这些平台的健康风险。我们展示了组合生物传感器的第一技术证明,用于连续,动态监测醇和葡萄糖的超低体积(1-5亩L)朝向开发佩戴物体基于IOT的平台。通过在适用于可穿戴应用的柔性基板上制造的独特的金 - 氧化锌(ZnO)薄膜电极堆来实现汗液中的非侵入性生物溶解。通过非法电化学阻抗光谱(EIS)和计时amperometry(CA)将活性ZnO传感区域固定用特异性用于检测醇和葡萄糖的酶复合物。在电极 - 汗液界面处发生的生物分子相互作用由阻抗和电容电流响应于双层中产生的电荷调节而表示。我们还报告了0.01-100mg / dl和葡萄糖浓度的醇浓度的检测为0.01-50mg / dl,其在合成汗液中存在,并且是有性化的人汗液。发现对醇和葡萄糖获得的检测极限是有性化的人汗液中的0.1mg / dl。交叉反应性研究表明,葡萄糖和醇并未显示出对交叉反应性分子的任何信号响应。此外,对组合生物传感器对连续暴露于含有醇和葡萄糖的无源穿透人汗液的稳定时间响应被证明在120分钟内持续时间。

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