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A Detailed Protocol for Perspiration Monitoring Using a Novel, Small, Wireless Device
Published on: November 24, 2016
Flexible wood-derived hydrogel patch for smartphone-assisted interval sweat cortisol profiling
Meiting Chen1, Junpeng Shi2, Shenghang Zhang3
1State Key Laboratory of Structural Chemistry, Fujian Institute of Research on the Structure of Matter, Chinese Academy of Sciences, Fuzhou, 350002, China; Xiamen Key Laboratory of Rare Earth Photoelectric Functional Materials, Xiamen Institute of Rare Earth Materials, Haixi Institute, Chinese Academy of Sciences, Xiamen, 361021, China; University of Chinese Academy of Sciences, Beijing, 101408, China.
Abstract:
Wearable biochemical sensors offer a promising route to noninvasive cortisol analysis. However, existing sweat-cortisol sensing platforms often rely on complex collection devices, electronic readout modules, or dedicated instrumentation. Here, we report a multilayer wood-derived hydrogel patch for portable optical analysis of sweat cortisol. The patch integrates the anisotropic porous framework of delignified balsa wood with a polyacrylamide/poly(vinyl alcohol)/glycerol (PAAm/PVA/glycerol) hydrogel network to form a flexible, hydrophilic sensing layer for pump-free sweat uptake. A cortisol-responsive Förster resonance energy transfer (FRET) probe embedded in the sensing layer enables molecular recognition, while adhesive and encapsulation layers improve wet-skin attachment and water retention. A companion smartphone application provides portable cortisol quantification. Under the tested conditions, the complete patch produced a distinguishable response at the lowest experimentally evaluated concentration of 1 pM in human sweat matrices. Pilot human studies supported the feasibility of interval sweat cortisol analysis during exercise-associated, time-of-day-related, and repeated-measurement scenarios. This work extends wood-derived materials into wearable biosensing and provides a bio-derived integration strategy for portable biochemical analysis.