A Passive Perspiration Inspired Wearable Platform for Continuous Glucose Monitoring

汗水 出汗 持续监测 生物医学工程 计算机科学 可穿戴计算机 连续血糖监测 前臂 化学 材料科学 医学 内科学 嵌入式系统 外科 糖尿病 内分泌学 运营管理 复合材料 经济 血糖性
作者
Tamoghna Saha,Muhammad Inam Khan,Samar S. Sandhu,Lu Yin,Sara Earney,Chenyang Zhang,Omeed Djassemi,Zongnan Wang,Jintong Han,Abdulhameed Abdal,S. K. Srivatsa,Shichao Ding,Joseph Wang
出处
期刊:Advanced Science [Wiley]
卷期号:11 (41): e2405518-e2405518 被引量:52
标识
DOI:10.1002/advs.202405518
摘要

The demand for glucose monitoring devices has witnessed continuous growth from the rising diabetic population. The traditional approach of blood glucose (BG) sensor strip testing generates only intermittent glucose readings. Interstitial fluid-based devices measure glucose dynamically, but their sensing approaches remain either minimally invasive or prone to skin irritation. Here, a sweat glucose monitoring system is presented, which completely operates under rest with no sweat stimulation and can generate real-time BG dynamics. Osmotically driven hydrogels, capillary action with paper microfluidics, and self-powered enzymatic biochemical sensor are used for simultaneous sweat extraction, transport, and glucose monitoring, respectively. The osmotic forces facilitate greater flux inflow and minimize sweat rate fluctuations compared to natural perspiration-based sampling. The epidermal platform is tested on fingertip and forearm under varying physiological conditions. Personalized calibration models are developed and validated to obtain real-time BG information from sweat. The estimated BG concentration showed a good correlation with measured BG concentration, with all values lying in the A+B region of consensus error grid (MARD = 10.56% (fingertip) and 13.17% (forearm)). Overall, the successful execution of such osmotically driven continuous BG monitoring system from passive sweat can be a useful addition to the next-generation continuous sweat glucose monitors.
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