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利用高通量微流控传感贴片进行区域性和相关性汗液分析,以实现汗液解码。

Regional and correlative sweat analysis using high-throughput microfluidic sensing patches toward decoding sweat.

机构信息

Department of Electrical Engineering and Computer Sciences, University of California, Berkeley, Berkeley, CA 94720, USA.

Berkeley Sensor and Actuator Center, University of California, Berkeley, Berkeley, CA 94720, USA.

出版信息

Sci Adv. 2019 Aug 16;5(8):eaaw9906. doi: 10.1126/sciadv.aaw9906. eCollection 2019 Aug.

Abstract

Recent technological advancements in wearable sensors have made it easier to detect sweat components, but our limited understanding of sweat restricts its application. A critical bottleneck for temporal and regional sweat analysis is achieving uniform, high-throughput fabrication of sweat sensor components, including microfluidic chip and sensing electrodes. To overcome this challenge, we introduce microfluidic sensing patches mass fabricated via roll-to-roll (R2R) processes. The patch allows sweat capture within a spiral microfluidic for real-time measurement of sweat parameters including [Na], [K], [glucose], and sweat rate in exercise and chemically induced sweat. The patch is demonstrated for investigating regional sweat composition, predicting whole-body fluid/electrolyte loss during exercise, uncovering relationships between sweat metrics, and tracking glucose dynamics to explore sweat-to-blood correlations in healthy and diabetic individuals. By enabling a comprehensive sweat analysis, the presented device is a crucial tool for advancing sweat testing beyond the research stage for point-of-care medical and athletic applications.

摘要

近年来,可穿戴传感器技术的进步使得检测汗液成分变得更加容易,但我们对汗液的有限理解限制了其应用。实现汗液传感器组件的均匀、高通量制造,包括微流控芯片和传感电极,是进行时间和区域汗液分析的一个关键瓶颈。为了克服这一挑战,我们引入了通过卷对卷(R2R)工艺大规模制造的微流体感应贴片。该贴片允许在螺旋微流体中捕获汗液,以实时测量汗液参数,包括运动和化学诱导汗液中的[Na]、[K]、[葡萄糖]和汗液率。该贴片用于研究区域汗液成分,预测运动期间全身液体/电解质损失,揭示汗液指标之间的关系,并跟踪葡萄糖动态,以探索健康和糖尿病个体的汗液与血液的相关性。通过实现全面的汗液分析,该设备是推动汗液测试从研究阶段迈向医疗和运动应用的重要工具。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3552/6697435/c885884e11b1/aaw9906-F1.jpg

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