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用于无创动态监测汗液中肌醇的皮肤界面全自主可穿戴生物传感器。

Skin-Interfaced Entirely Self-Contained Wearable Biosensor for the Noninvasive and Dynamic Monitoring of Sweat Myo-Inositol.

作者信息

Deng Wei, Bai Jing, Zhou Ming

机构信息

Key Laboratory of Polyoxometalate and Reticular Material Chemistry of Ministry of Education, Key Laboratory of Nanobiosensing and Nanobioanalysis at Universities of Jilin Province, Analysis and Testing Center, Department of Chemistry, Northeast Normal University, Changchun, Jilin Province 130024, China.

出版信息

ACS Sens. 2025 Jul 25;10(7):5166-5175. doi: 10.1021/acssensors.5c01284. Epub 2025 Jun 3.

Abstract

Wearable sweat biosensors possess the unique capacity to noninvasively and continually track chemical biomarkers pertinent to health assessment and illness diagnoses. Personalized monitoring of myo-inositol is crucial in physiological function modulation and disease management. However, current methodologies heavily rely on intrusive blood draws/unwieldy analytical laboratory apparatus, hindering their implementation for daily and real-time monitoring. Here, we report a skin-interfaced entirely self-contained wearable sweat myo-inositol biosensor (ES-WSMB), which readily allows on-demand sweat extraction at rest via an iontophoresis unit, automated sweat sampling and renewal via an automated microfluidic unit, real-time myo-inositol analysis and calibration with simultaneously collected sweat pH and Na via a sweat analysis unit, and signal processing/communication via an intelligent control unit. We tested the performance of ES-WSMB in healthy participants through the dose-response and metabolic-interference challenges. We identify a high correlation between sweat and plasma myo-inositol through the control experiments that are exquisitely designed. These distinctive features of ES-WSMB would facilitate precise and personalized health management in physiological functions, disease, and beyond.

摘要

可穿戴汗液生物传感器具有独特能力,能够以非侵入性方式持续追踪与健康评估和疾病诊断相关的化学生物标志物。对肌醇进行个性化监测在生理功能调节和疾病管理中至关重要。然而,当前方法严重依赖侵入性的采血操作或笨重的分析实验室设备,这阻碍了它们用于日常实时监测。在此,我们报告了一种与皮肤相连的完全独立的可穿戴汗液肌醇生物传感器(ES-WSMB),它能够通过离子电渗疗法单元在静息状态下按需提取汗液,通过自动微流控单元实现汗液的自动采样和更新,通过汗液分析单元对同时采集的汗液pH值和钠进行实时肌醇分析和校准,并通过智能控制单元进行信号处理/通信。我们通过剂量反应和代谢干扰挑战测试了ES-WSMB在健康参与者中的性能。通过精心设计的对照实验,我们发现汗液和血浆肌醇之间存在高度相关性。ES-WSMB的这些独特特性将有助于在生理功能、疾病及其他方面实现精确和个性化的健康管理。

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