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一种皮肤界面微流控平台支持人体运动过程中动态汗液生化分析。

A skin-interfaced microfluidic platform supports dynamic sweat biochemical analysis during human exercise.

机构信息

Querrey Simpson Institute for Bioelectronics, Northwestern University, Evanston, IL 60208, USA.

Center for Bio-Integrated Electronics, Northwestern University, Evanston, IL 60208, USA.

出版信息

Sci Transl Med. 2024 Sep 4;16(763):eado5366. doi: 10.1126/scitranslmed.ado5366.

Abstract

Blood lactate concentration is an established circulating biomarker for measuring muscle acidity and can be evaluated for monitoring endurance, training routines, or athletic performance. Sweat is an alternative biofluid that may serve similar purposes and offers the advantage of noninvasive collection and continuous monitoring. The relationship between blood lactate and dynamic sweat biochemistry for wearable engineering applications in physiological fitness remains poorly defined. Here, we developed a microfluidic wearable band with an integrated colorimetric timer and biochemical assays that temporally captures sweat and measures pH and lactate concentration. A colorimetric silver nanoplasmonic assay was used to measure the concentration of lactate, and dye-conjugated SiO nanoparticle-agarose composite materials supported dynamic pH analysis. We evaluated these sweat biomarkers in relation to blood lactate in human participant studies during cycling exercise of varying intensity. Iontophoresis-generated sweat pH from regions of actively working muscles decreased with increasing heart rate during exercise and was negatively correlated with blood lactate concentration. In contrast, sweat pH from nonworking muscles did not correlate with blood lactate concentration. Changes in sweat pH and blood lactate were observed in participants who did not regularly exercise but not in individuals who regularly exercised, suggesting a relationship to physical fitness and supporting further development for noninvasive, biochemical fitness evaluations.

摘要

血液乳酸浓度是一种已被确立的循环生物标志物,用于测量肌肉酸度,可以评估其在耐力、训练常规或运动表现方面的监测作用。汗液是一种替代的生物流体,可能具有类似的用途,并具有非侵入性采集和连续监测的优势。在生理健康的可穿戴工程应用中,血液乳酸与动态汗液生物化学之间的关系仍未得到很好的定义。在这里,我们开发了一种带有集成比色计时器和生化分析的微流控可穿戴带,可定时采集汗液并测量 pH 值和乳酸浓度。使用比色银纳米等离子体测定法来测量乳酸浓度,并用染料偶联的 SiO2 纳米颗粒-琼脂糖复合材料支持动态 pH 分析。我们在不同强度的循环运动期间的人体参与者研究中,评估了这些与血液乳酸相关的汗液生物标志物。在运动过程中,来自主动工作肌肉区域的电渗析汗液 pH 值随着心率的增加而降低,并且与血液乳酸浓度呈负相关。相比之下,来自非工作肌肉的汗液 pH 值与血液乳酸浓度无关。在不经常运动的参与者中观察到了汗液 pH 值和血液乳酸的变化,但在经常运动的个体中没有观察到这种变化,这表明它们与身体健康有关,支持了用于非侵入性、生化健康评估的进一步发展。

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