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用于表皮pH值连续可穿戴光学监测的变色纤维素材料和智能纺织品的设计。

Design of halochromic cellulosic materials and smart textiles for continuous wearable optical monitoring of epidermal pH.

作者信息

Mohr Gerhard J, Kassal Petar, Žuvić Iva, Krawczyk Krzysztof K, Steinberg Matthew D, Steinberg Ivana Murković

机构信息

Joanneum Research Forschungsgesellschaft mbH - Materials, Franz-Pichler-Straße 30, Weiz, A-8160, Austria.

Faculty of Chemical Engineering and Technology, University of Zagreb, Marulićev Trg 19, Zagreb, 10000, Croatia.

出版信息

Mikrochim Acta. 2025 Jun 4;192(7):405. doi: 10.1007/s00604-025-07259-x.

Abstract

The direct on-body monitoring of sweat pH and skin pH can provide vanguard information about a person's health status and overall fitness or wellbeing. Sweat pH in particular is a readily accessible biomarker that may be determined with low-cost, non-invasive epidermal patches. With this in mind, we have created a diverse set of wearable halochromic materials, suitable for real-time and reversible monitoring of epidermal pH. A range of cellulosic materials in the form of nanocrystals, microcellulose particles, transparent cellulose films and paper were covalently functionalised with a 2-hydroxyethylsulfonyl azo pH indicator dye by vinylsulfonyl conjugation. Comparative analysis of the photo-physical and analytical properties was performed, and the apparent acid-base equilibrium constants - pK values of the immobilised indicator - ranging from 5.6 for cellulose paper to 6.9 for nanocellulose particles, cover the physiological range of epidermal sweat and skin pH. A polyester textile - typical of modern sports apparel - was subsequently functionalised with the biocompatible hydrogel containing the halochromic cellulose microparticles. The colour change of the smart textile was found to be fully reversible (RSD = 0.14%) and its pH response highly stable for over 280 min upon continuous exposure to pH buffers (signal change of 0.16%). The halochromic textile was characterised with custom-made low-power wearable optoelectronics combining a reflectometer and real-time data logger, and the system bench-marked against a calibrated laboratory glass pH electrode and meter. The wearable optoelectronic and halochromic textile system was able to continuously monitor pH in buffer solutions over the physiologically relevant range with an accuracy of 0.18 pH and precision of 0.05 pH units.

摘要

对汗液pH值和皮肤pH值进行直接的体表监测,可以提供有关个人健康状况、整体健康水平或幸福感的前沿信息。特别是汗液pH值,它是一种易于获取的生物标志物,可以通过低成本、非侵入性的表皮贴片来测定。考虑到这一点,我们制备了一系列可穿戴的酸碱指示剂材料,适用于对表皮pH值进行实时和可逆监测。一系列呈纳米晶体、微纤维素颗粒、透明纤维素薄膜和纸张形式的纤维素材料通过乙烯磺酰共轭与一种2-羟乙基磺酰偶氮pH指示剂染料进行共价功能化。对其光物理和分析性质进行了比较分析,固定化指示剂的表观酸碱平衡常数——pK值,范围从纤维素纸的5.6到纳米纤维素颗粒的6.9,涵盖了表皮汗液和皮肤pH值的生理范围。随后,一种典型的现代运动服装用聚酯纺织品用含有酸碱指示剂纤维素微粒的生物相容性水凝胶进行功能化。发现这种智能纺织品的颜色变化是完全可逆的(相对标准偏差=0.14%),并且在连续暴露于pH缓冲液中超过280分钟时,其pH响应高度稳定(信号变化为0.16%)。这种酸碱指示剂纺织品用结合了反射仪和实时数据记录器的定制低功率可穿戴光电器件进行表征,并且该系统以校准后的实验室玻璃pH电极和仪表为基准进行测试。这种可穿戴光电器件和酸碱指示剂纺织品系统能够在生理相关范围内连续监测缓冲溶液中的pH值,准确度为0.18 pH,精密度为0.05 pH单位。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/286c/12137401/e5b6ff79844b/604_2025_7259_Fig1_HTML.jpg

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