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用于评估体温调节和皮肤屏障功能的皮肤界面超疏水无感汗传感器。

Skin-Interfaced Superhydrophobic Insensible Sweat Sensors for Evaluating Body Thermoregulation and Skin Barrier Functions.

机构信息

School of Materials Science and Engineering, Xiangtan University, Xiangtan, Hunan 411105, China.

School of Chemistry, Xiangtan University, Xiangtan, Hunan 411105, China.

出版信息

ACS Nano. 2023 Mar 28;17(6):5588-5599. doi: 10.1021/acsnano.2c11267. Epub 2023 Feb 6.

Abstract

Monitoring sweat rate is vital for estimating sweat loss and accurately measuring biomarkers of interest. Although various optical or electrical sensors have been developed to monitor the sensible sweat rate, the quantification of the insensible sweat rate that is directly related to body thermoregulation and skin barrier functions still remains a challenge. This work introduces a superhydrophobic sweat sensor based on a polyacrylate sodium/MXene composite sandwiched between two superhydrophobic textile layers to continuously measure sweat vapor from insensible sweat with high sensitivity and rapid response. The superhydrophobic textile on a holey thin substrate with reduced stiffness and excellent breathability allows the permeation of sweat vapor, while preventing the sensor from being affected by the external water droplets and internal sensible sweat. Integrating the insensible sweat sensor with a flexible wireless communication and powering module further yields a standalone sensing system to continuously monitor insensible sweat rates at different body locations for diverse application scenarios. Proof-of-concept demonstrations on human subjects showcase the feasibility to continuously evaluate the body's thermoregulation and skin barrier functions for the assessment of thermal comfort, disease conditions, and nervous system activity. The results presented in this work also provide a low-cost device platform to detect other health-relevant biomarkers in the sweat (vapor) as the next-generation sweat sensor for smart healthcare and personalized medicine.

摘要

监测出汗率对于估计出汗量和准确测量感兴趣的生物标志物至关重要。尽管已经开发出各种光学或电气传感器来监测显汗率,但与身体体温调节和皮肤屏障功能直接相关的不可见汗率的量化仍然是一个挑战。这项工作介绍了一种基于聚丙烯酸钠/MXene 复合材料的超疏水汗液传感器,该传感器夹在两层超疏水纺织层之间,可实现高灵敏度和快速响应的不可见汗蒸汽的连续测量。具有降低的刚性和出色透气性的带孔薄基底上的超疏水纺织品允许汗液蒸汽渗透,同时防止传感器受到外部水滴和内部显汗的影响。将不可见汗传感器与灵活的无线通信和供电模块集成在一起,进一步产生了一个独立的传感系统,可在不同身体部位连续监测不可见汗率,适用于各种应用场景。在人体受试者上进行的概念验证演示展示了连续评估身体体温调节和皮肤屏障功能的可行性,以评估热舒适度、疾病状况和神经系统活动。本工作中的结果还为在汗液(蒸汽)中检测其他与健康相关的生物标志物提供了一个低成本的设备平台,可作为下一代用于智能保健和个性化医疗的汗液传感器。

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