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一种用于同时采样、储存和分析生物流体并监测反离子的表皮可穿戴微流控贴片。

An epidermal wearable microfluidic patch for simultaneous sampling, storage, and analysis of biofluids with counterion monitoring.

机构信息

Soft Transducers Laboratory, École Polytechnique Fédérale de Lausanne (EPFL), 2000 Neuchatel, Switzerland.

Micro & Nano systems Centre, Tyndall National Institute, T12 R5CP Cork, Ireland.

出版信息

Lab Chip. 2022 May 3;22(9):1793-1804. doi: 10.1039/d2lc00183g.

Abstract

Simultaneous access to different biofluids enables an accurate analysis of multiple analytes, leading to a precision diagnosis and appropriate medication. Additionally, establishing a relationship between various markers in different biofluids and their correlation to biomarkers in blood allows the development of an algorithmic approach, which aids non-invasive diagnosis through single parameter monitoring. However, the main bottleneck that exists in multiple biofluid analyses for its clinical implementation is the requirement of an advanced microfluidic coupled device design, which empowers simultaneous collection and monitoring. To tackle this challenge, an epidermal wearable bio-fluidic patch that facilitates simultaneous on-demand extraction, sampling, and storage of sweat and interstitial fluid (ISF) together with monitoring of their corresponding counterions is presented. The clean room free development of a biofluidic patch is realized through 3D integration of laser patterned optimized microfluidic structures, a low-cost screen-printed stimulation module, and a potentiometric chloride (Cl) and calcium (Ca) ion sensing module for adequate dual biofluid sampling and analysis. The developed Cl and Ca ion-selective sensors exhibit good repeatability, selectivity, acceptable stability, and sensitivity. The proof-of-concept demonstration of the fabricated patch for simultaneous dual-sampling, storage, and monitoring of the sweat Cl and ISF Ca on a healthy volunteer during different periods of the day leverages its potential in real-time personalized healthcare clinical usages. Furthermore, the patch's electronic interface and use of wireless transmission facilitates a point-of-care non-invasive lab-on-skin application for monitoring the health status of individuals.

摘要

同时获取不同的生物流体可以对多种分析物进行准确分析,从而实现精确诊断和适当的药物治疗。此外,在不同的生物流体中建立各种标志物之间的关系及其与血液生物标志物的相关性,可以开发出一种算法方法,通过单个参数监测来辅助非侵入性诊断。然而,在将多生物流体分析应用于临床实践中存在的主要瓶颈是需要先进的微流控耦合器件设计,以实现同时采集和监测。为了解决这一挑战,本文提出了一种表皮可穿戴生物流体贴片,它可以方便地按需同时提取、采样和储存汗液和间质液(ISF),并监测它们相应的反离子。通过对激光图案优化微流控结构、低成本的丝网印刷刺激模块以及用于充分双生物流体采样和分析的电位氯离子(Cl)和钙离子(Ca)离子传感模块的 3D 集成,实现了生物流体贴片的无洁净室开发。所开发的 Cl 和 Ca 离子选择性传感器具有良好的重复性、选择性、可接受的稳定性和灵敏度。在一名健康志愿者身上进行的同时进行双采样、储存和监测汗液 Cl 和 ISF Ca 的制作贴片的概念验证演示,证明了其在实时个性化医疗临床应用中的潜力。此外,贴片的电子接口和无线传输的使用促进了一种在皮肤表面进行的即时护理非侵入式实验室应用,用于监测个体的健康状况。

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