Department of NanoEngineering, University of California, San Diego, La Jolla, CA, 92093, USA.
Department of Fundamental Chemistry, Institute of Chemistry, University of Sao Paulo, Sao Paulo, Brazil.
Anal Bioanal Chem. 2022 Jul;414(18):5411-5421. doi: 10.1007/s00216-021-03865-9. Epub 2022 Jan 11.
A soft and flexible wearable sweat epidermal microfluidic device capable of simultaneously stimulating, collecting, and electrochemically analyzing sweat is demonstrated. The device represents the first system integrating an iontophoretic pilocarpine delivery system around the inlet channels of epidermal polydimethylsiloxane (PDMS) microfluidic device for sweat collection and analysis. The freshly generated sweat is naturally pumped into the fluidic inlet without the need of exercising. Soft skin-mounted systems, incorporating non-invasive, on-demand sweat sampling/analysis interfaces for tracking target biomarkers, are in urgent need. Existing skin conformal microfluidic-based sensors for continuous monitoring of target sweat biomarkers rely on assays during intense physical exercising. This work demonstrates the first example of combining sweat stimulation, through transdermal pilocarpine delivery, with sample collection through a microfluidic channel for real-time electrochemical monitoring of sweat glucose, in a fully integrated soft and flexible multiplexed device which eliminates the need of exercising. The on-body operational performance and layout of the device were optimized considering the fluid dynamics and evaluated for detecting sweat glucose in several volunteers. Furthermore, the microfluidic monitoring device was integrated with a real-time wireless data transmission system using a flexible electronic board PCB conformal with the body. The new microfluidic platform paves the way to real-time non-invasive monitoring of biomarkers in stimulated sweat samples for diverse healthcare and wellness applications.
展示了一种柔软灵活的可穿戴汗表皮微流控装置,能够同时刺激、收集和电化学分析汗液。该装置代表了第一个系统,它在表皮聚二甲基硅氧烷(PDMS)微流控装置的入口通道周围集成了离子电渗递药系统,用于汗液收集和分析。新生成的汗液无需运动即可自然地被吸入到流体入口中。迫切需要柔软的皮肤贴合系统,结合非侵入性、按需的汗液采样/分析接口,以跟踪目标生物标志物。现有的基于皮肤贴合的微流控传感器用于持续监测目标汗液生物标志物,依赖于剧烈运动期间的检测。这项工作展示了第一个将汗液刺激(通过透皮毛果芸香碱递送)与通过微流道进行的样本收集相结合的例子,用于实时电化学监测汗液中的葡萄糖,这是一个完全集成的柔软灵活的多路复用设备,消除了运动的需要。考虑到流体动力学,对设备的体内操作性能和布局进行了优化,并在几个志愿者中评估了其检测汗液葡萄糖的能力。此外,微流控监测装置与一个实时无线数据传输系统集成,该系统使用与身体贴合的柔性电路板 PCB。这个新的微流控平台为各种医疗保健和健康应用中刺激汗液样本中的生物标志物的实时非侵入性监测铺平了道路。