National School of Applied Sciences, LISA Laboratory, Cadi Ayyad University, Marrakech 40000, Morocco.
Moroccan Foundation for Advanced Science, Innovation and Research, Digitalization & Microelectronics Smart Devices Laboratory, Rabat 10100, Morocco.
Sensors (Basel). 2022 Nov 19;22(22):8971. doi: 10.3390/s22228971.
Wearable sweat sensors offer the possibility of continuous real-time health monitoring of an individual at a low cost without invasion. A variety of sweat glucose sensors have been developed thus far to help diabetes patients frequently monitor blood glucose levels through sweat glucose as a surrogate marker. The present study demonstrates the development and characterization of a three-dimensional paper-based microfluidic electrochemical integrated device (3D PMED) for measuring glucose concentration in sweat in real-time via simple, non-invasive, capillary-action-based sample collection. The device was selective for glucose, and it detected glucose accurately in the clinically relevant range (0~2 mM) in an off-body setup. To the best of our knowledge, this is the first time NEXAR™ has been used for biosensing applications. Further, the developed glucose sensor has acceptable sensitivity of 16.8 µA/mM/cm. Importantly, in an on-body setup, the device achieved a significant amperometric response to sweat glucose in a very short amount of time (a few seconds). With detailed investigations, this proof-of-concept study could help further the development of sensitive and selective sweat-based glucose sensing devices for real-time glucose monitoring in diabetes patients.
可穿戴汗液传感器提供了一种无需侵入即可低成本连续实时监测个体健康状况的可能性。迄今为止,已经开发出各种汗液葡萄糖传感器,以帮助糖尿病患者通过汗液葡萄糖作为替代标志物频繁监测血糖水平。本研究展示了一种用于通过简单、非侵入性、基于毛细作用的样品采集实时测量汗液中葡萄糖浓度的三维纸质微流控电化学集成装置(3D PMED)的开发和特性。该设备对葡萄糖具有选择性,并在体外设置中在临床相关范围内(0~2mM)准确检测葡萄糖。据我们所知,这是首次将 NEXAR™ 用于生物传感应用。此外,开发的葡萄糖传感器具有可接受的灵敏度为 16.8µA/mM/cm。重要的是,在体内设置中,该设备在很短的时间内(几秒钟)对汗液中的葡萄糖产生了显著的电流响应。通过详细的研究,这项概念验证研究可以帮助进一步开发用于糖尿病患者实时血糖监测的敏感和选择性汗液葡萄糖传感装置。