Soft, skin-interfaced microfluidic systems with integrated immunoassays, fluorometric sensors, and impedance measurement capabilities

Author:

Kim SungbongORCID,Lee Boram,Reeder Jonathan T.ORCID,Seo Seon HeeORCID,Lee Sung-UkORCID,Hourlier-Fargette AurélieORCID,Shin Joonchul,Sekine Yurina,Jeong HyoyoungORCID,Oh Yong Suk,Aranyosi Alexander J.,Lee Stephen P.,Model Jeffrey B.,Lee Geumbee,Seo Min-Ho,Kwak Sung SooORCID,Jo Seongbin,Park Gyungmin,Han Sunghyun,Park Inkyu,Jung Hyo-IlORCID,Ghaffari RoozbehORCID,Koo Jahyun,Braun Paul V.,Rogers John A.

Abstract

Soft microfluidic systems that capture, store, and perform biomarker analysis of microliter volumes of sweat, in situ, as it emerges from the surface of the skin, represent an emerging class of wearable technology with powerful capabilities that complement those of traditional biophysical sensing devices. Recent work establishes applications in the real-time characterization of sweat dynamics and sweat chemistry in the context of sports performance and healthcare diagnostics. This paper presents a collection of advances in biochemical sensors and microfluidic designs that support multimodal operation in the monitoring of physiological signatures directly correlated to physical and mental stresses. These wireless, battery-free, skin-interfaced devices combine lateral flow immunoassays for cortisol, fluorometric assays for glucose and ascorbic acid (vitamin C), and digital tracking of skin galvanic responses. Systematic benchtop evaluations and field studies on human subjects highlight the key features of this platform for the continuous, noninvasive monitoring of biochemical and biophysical correlates of the stress state.

Publisher

Proceedings of the National Academy of Sciences

Subject

Multidisciplinary

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