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增强皮肤分析:用于实时定量检测汗液中多种分析物的微流控装置和智能手机成像模块。

Enhancing On-Skin Analysis: A Microfluidic Device and Smartphone Imaging Module for Real-Time Quantitative Detection of Multianalytes in Sweat.

机构信息

Research Laboratory of Spectrometry & Micro and Nano Extraction, Department of Chemistry, Iran University of Science and Technology, Tehran 16846-13114, Iran.

出版信息

Anal Chem. 2023 Nov 7;95(44):16315-16326. doi: 10.1021/acs.analchem.3c03516. Epub 2023 Oct 28.

Abstract

Wearable sweat sensors present exciting opportunities for advancing personal health monitoring and noninvasive biomarker measurements. However, existing sensors often fall short in accurate detection of low analyte volumes and concentrations and lack multimodal sensing capabilities. Herein, we present a highly portable four-channel microfluidic device capable of conducting simultaneous sweat sampling and fluorometric sensing of potential biomarkers, such as l-Tyr, l-Trp, Crt, and NH, specifically designed for kidney disease monitoring. Our microfluidic device seamlessly integrates with smartphones, facilitating easy data retrieval and analysis. The core of the sensing array is a novel fluorometric solid-state mechanism utilizing carbon polymer dots derived from dopamine, catechol, and -phenylenediamine monomers embedded in gelatin hydrogels. The sensors exhibit exceptional performance, offering linear ranges of 5-275, 6-170, 4-220, and 5-170 μM, with impressively low detection limits of 1.5, 1.2, 1.3, and 1.4 μM for l-Tyr, l-Trp, Crt, and NH, respectively. Through meticulous optimization of operational variables, comprising the temperature, sample volume, and assay time, we achieved the best performance of the device. Furthermore, the sensors exhibited remarkable selectivity, effectively distinguishing between biologically similar species and other potential biological compounds found in sweat. Our evaluation also extended to monitoring kidney diseases in patients and healthy individuals, showcasing the device's utility in world scenarios. Promising results showcase the potential of low-cost, multidiagnostic microfluidic sensor arrays, especially with synthetic skin integration, for enhanced disease detection and healthcare outcomes.

摘要

可穿戴汗液传感器为推进个人健康监测和非侵入性生物标志物测量提供了令人兴奋的机会。然而,现有的传感器在准确检测低分析物体积和浓度方面往往存在不足,并且缺乏多模态传感能力。在此,我们提出了一种高度便携的四通道微流控设备,能够同时进行汗液采样和潜在生物标志物的荧光传感,特别设计用于监测肾脏疾病。我们的微流控设备与智能手机无缝集成,便于轻松检索和分析数据。传感阵列的核心是一种新颖的荧光固态机制,利用多巴胺、儿茶酚和 -苯二胺单体衍生的碳聚合物点嵌入明胶水凝胶中。传感器表现出优异的性能,提供 5-275、6-170、4-220 和 5-170 μM 的线性范围,对于 l-Tyr、l-Trp、Crt 和 NH 的检测限分别低至 1.5、1.2、1.3 和 1.4 μM。通过对操作变量(包括温度、样品体积和分析时间)进行细致的优化,我们实现了设备的最佳性能。此外,传感器表现出显著的选择性,能够有效区分生物相似物质和汗液中其他潜在生物化合物。我们的评估还扩展到监测患者和健康个体的肾脏疾病,展示了该设备在实际场景中的实用性。有前途的结果展示了低成本、多功能诊断微流控传感器阵列的潜力,特别是与合成皮肤集成,可增强疾病检测和医疗保健效果。

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