Bandodkar Amay J, Jia Wenzhao, Yardımcı Ceren, Wang Xuan, Ramirez Julian, Wang Joseph
Department of NanoEngineering, University of California, San Diego , La Jolla, California 92093, United States.
Anal Chem. 2015 Jan 6;87(1):394-8. doi: 10.1021/ac504300n. Epub 2014 Dec 12.
We present a proof-of-concept demonstration of an all-printed temporary tattoo-based glucose sensor for noninvasive glycemic monitoring. The sensor represents the first example of an easy-to-wear flexible tattoo-based epidermal diagnostic device combining reverse iontophoretic extraction of interstitial glucose and an enzyme-based amperometric biosensor. In-vitro studies reveal the tattoo sensor's linear response toward physiologically relevant glucose levels with negligible interferences from common coexisting electroactive species. The iontophoretic-biosensing tattoo platform is reduced to practice by applying the device on human subjects and monitoring variations in glycemic levels due to food consumption. Correlation of the sensor response with that of a commercial glucose meter underscores the promise of the tattoo sensor to detect glucose levels in a noninvasive fashion. Control on-body experiments demonstrate the importance of the reverse iontophoresis operation and validate the sensor specificity. This preliminary investigation indicates that the tattoo-based iontophoresis-sensor platform holds considerable promise for efficient diabetes management and can be extended toward noninvasive monitoring of other physiologically relevant analytes present in the interstitial fluid.
我们展示了一种用于无创血糖监测的全印刷临时纹身式葡萄糖传感器的概念验证演示。该传感器是一种易于佩戴的基于柔性纹身的表皮诊断设备的首个实例,它结合了间质葡萄糖的反向离子电渗提取和基于酶的安培生物传感器。体外研究表明,纹身传感器对生理相关葡萄糖水平呈线性响应,常见共存电活性物质的干扰可忽略不计。通过将该设备应用于人体受试者并监测因食物摄入引起的血糖水平变化,离子电渗 - 生物传感纹身平台得以付诸实践。传感器响应与商用血糖仪响应的相关性突出了纹身传感器以无创方式检测葡萄糖水平的前景。体内对照实验证明了反向离子电渗操作的重要性,并验证了传感器的特异性。这项初步研究表明,基于纹身的离子电渗传感器平台在高效糖尿病管理方面具有巨大潜力,并且可以扩展到对间质液中其他生理相关分析物的无创监测。