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用于从汗液中持续监测乳酸的超级电容器供电可穿戴生物传感器。

Supercapacitor-powered wearable biosensor for continuous lactate monitoring from sweat.

作者信息

Asadian Elham, Hekmat Farzaneh, Hafezi Kahnamouei Mohammad, Mohammadpour Raheleh, Shahrokhian Saeed, Sasanpour Pezhman

机构信息

Medical Nanotechnology and Tissue Engineering Research Center, Shahid Beheshti University of Medical Sciences, Tehran, 19689-17313, Iran; Department of Tissue Engineering and Applied Cell Sciences, School of Advanced Technologies in Medicine, Shahid Beheshti University of Medical Sciences, Tehran, 19689-17313, Iran.

Department of Chemistry, Shahid Beheshti University, Tehran, 1983969411, Iran.

出版信息

Biosens Bioelectron. 2025 May 1;275:117226. doi: 10.1016/j.bios.2025.117226. Epub 2025 Feb 10.

Abstract

The development of wearable sensing platforms for continuous monitoring of sweat biomarkers has gained significant attention, particularly for lactate detection. This study presents the design and fabrication of a novel wearable lactate biosensor that integrates a flexible supercapacitor power supply with an advanced lactate sensing platform. The sensing platform features NiCo nanosheets electrodeposited onto nanocages of bimetallic CoFe Prussian Blue analogue (PBA), providing an optimal microenvironment for the immobilization of lactate oxidase (LOx) enzymes. The CoFe PBA nanocages act as efficient electrocatalysts for the reduction of hydrogen peroxide, enhancing the sensor's performance. The electrode exhibits a sensitivity of 262 μA mMcm and demonstrates a short response time (<5 s), making it suitable for real-time monitoring applications. Additionally, the energy supply unit is constructed using a wearable conductive carbon textile (CCT) substrate modified with NiCoS through electrochemical deposition, achieving the necessary electrical conductivity. A flexible asymmetric supercapacitor (ASC) is then developed utilizing NiCoS@CCT and FeS@CNT@CCT as the positive and negative electrodes, respectively. This ASC exhibits remarkable electrochemical properties, including a high specific capacitance of 205 F g⁻, notable energy density at elevated power densities, and excellent rate capability. Integrating these components with a custom-designed electronic circuit board results in a lightweight wearable sensor capable of continuous lactate monitoring in perspiration. This innovative approach demonstrates significant potential for advancing point-of-care health monitoring technologies.

摘要

用于连续监测汗液生物标志物的可穿戴传感平台的开发受到了广泛关注,尤其是在乳酸检测方面。本研究展示了一种新型可穿戴乳酸生物传感器的设计与制造,该传感器将柔性超级电容器电源与先进的乳酸传感平台集成在一起。传感平台的特点是在双金属钴铁普鲁士蓝类似物(PBA)的纳米笼上电沉积镍钴纳米片,为固定乳酸氧化酶(LOx)提供了最佳微环境。钴铁PBA纳米笼作为高效的过氧化氢还原电催化剂,提高了传感器的性能。该电极的灵敏度为262 μA mMcm,响应时间短(<5秒),适用于实时监测应用。此外,能量供应单元采用通过电化学沉积用NiCoS修饰的可穿戴导电碳织物(CCT)基板构建,实现了所需的导电性。然后利用NiCoS@CCT和FeS@CNT@CCT分别作为正负极开发了一种柔性非对称超级电容器(ASC)。该ASC具有显著的电化学性能,包括205 F g⁻的高比电容、在高功率密度下显著的能量密度和出色的倍率性能。将这些组件与定制设计的电子电路板集成,得到了一种能够在汗液中连续监测乳酸的轻质可穿戴传感器。这种创新方法在推进即时医疗健康监测技术方面显示出巨大潜力。

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