Drug Delivery, Disposition and Dynamics, Monash Institute of Pharmaceutical Sciences, Monash University, Parkville, Victoria 3052, Australia.
Commonwealth Scientific and Industrial Research Organization (CSIRO), Clayton, Victoria 3168, Australia.
ACS Appl Mater Interfaces. 2022 Jan 12;14(1):2401-2410. doi: 10.1021/acsami.1c22383. Epub 2021 Dec 30.
Wearable technologies have great potential in health monitoring and disease diagnostics. As a consequence, interest in the study of wearable sensors has dramatically increased over recent years. Successful translation of this technology from research prototypes to commercial products requires addressing some of the major challenges faced by wearable sensors such as loss of, and damage in, the biological recognition layer of the skin-interfaced sensors. In this work, we propose a solution to this challenge by integrating micropillar array (MPA) surfaces as part of the sensing layer with the aim to protect and prevent the loss of the enzyme layer from mechanical stress while the sensor is worn. The proposed wearable sensing patch is composed of reference, counter, and working electrodes, all made of MPAs and is designed for measuring glucose in sweat. MPA sensing patch has a wide linear range of 50 μM to 1.4 mM, a sensitivity of 4.7 ± 0.8 μA mM, and a limit of detection of 26 ± 5 μM. The glucose sensing patch was tested using human sweat where glucose-level changes were successfully measured before and after meal consumption. The developed patch provides an alternative solution to the problem of the damage to the sensor microenvironment upon wear. But in addition, it also offers a user-friendly, cost-effective, and reliable sweat analysis platform with significant potential in health monitoring applications.
可穿戴技术在健康监测和疾病诊断方面具有巨大的潜力。因此,近年来人们对可穿戴传感器的研究兴趣大幅增加。要将这项技术从研究原型转化为商业产品,就必须解决可穿戴传感器面临的一些重大挑战,例如与皮肤接口的传感器的生物识别层的损失和损坏。在这项工作中,我们提出了一种解决方案,即将微柱阵列(MPA)表面集成作为传感层的一部分,目的是在传感器佩戴时保护和防止酶层因机械应力而丢失。所提出的可穿戴传感贴片由参考、对电极和工作电极组成,全部由 MPA 制成,用于测量汗液中的葡萄糖。MPA 传感贴片具有 50 μM 至 1.4 mM 的宽线性范围、4.7 ± 0.8 μA mM 的灵敏度和 26 ± 5 μM 的检测限。使用人体汗液对葡萄糖传感贴片进行了测试,成功测量了餐前和餐后的葡萄糖水平变化。所开发的贴片为传感器微环境在佩戴时受损的问题提供了一种替代解决方案。但除此之外,它还提供了一个用户友好、经济高效且可靠的汗液分析平台,在健康监测应用中具有巨大的潜力。