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首页> 外文期刊>Scientific reports. >A wearable biochemical sensor for monitoring alcohol consumption lifestyle through Ethyl glucuronide (EtG) detection in human sweat
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A wearable biochemical sensor for monitoring alcohol consumption lifestyle through Ethyl glucuronide (EtG) detection in human sweat

机译:可穿戴式生化传感器,用于通过人类汗液中的葡萄糖醛酸乙酯(EtG)检测来监测酒精消费的生活方式

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摘要

We demonstrate for the first time a wearable biochemical sensor for monitoring alcohol consumption through the detection and quantification of a metabolite of ethanol, ethyl glucuronide (EtG). We designed and fabricated two co-planar sensors with gold and zinc oxide as sensing electrodes. We also designed a LED based reporting for the presence of EtG in the human sweat samples. The sensor functions on affinity based immunoassay principles whereby monoclonal antibodies for EtG were immobilized on the electrodes using thiol based chemistry. Detection of EtG from human sweat was achieved through chemiresistive sensing mechanism. In this method, an AC voltage was applied across the two coplanar electrodes and the impedance across the sensor electrodes was measured and calibrated for physiologically relevant doses of EtG in human sweat. EtG detection over a dose concentration of 0.001-100 μg/L was demonstrated on both glass and polyimide substrates. Detection sensitivity was lower at 1 μg/L with gold electrodes as compared to ZnO, which had detection sensitivity of 0.001 μg/L. Based on the detection range the wearable sensor has the ability to detect alcohol consumption of up to 11 standard drinks in the US over a period of 4 to 9 hours.
机译:我们首次展示了一种可穿戴式生化传感器,用于通过检测和定量乙醇代谢物葡萄糖醛酸乙酯(EtG)来监测酒精消耗。我们设计和制造了两个共面传感器,其中金和氧化锌为传感电极。我们还设计了基于LED的报告,用于人类汗液样本中EtG的存在。传感器根据基于亲和力的免疫测定原理工作,从而使用基于硫醇的化学方法将EtG单克隆抗体固定在电极上。通过化学感应机制实现了人类汗液中EtG的检测。在这种方法中,在两个共面电极之间施加交流电压,并测量和校准传感器汗液中生理相关剂量的EtG的传感器电极上的阻抗。在玻璃和聚酰亚胺底物上均显示出在0.001-100μg/ L剂量浓度范围内的EtG检测。与ZnO相比,金电极在1μg/ L时的检测灵敏度较低,而ZnO的检测灵敏度为0.001μg/ L。根据检测范围,可穿戴式传感器能够在4到9个小时内检测美国多达11种标准饮料的酒精消耗。

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