Non-enzymatic electrochemical sensor for wearable monitoring of sweat biomarkers: A mini-review

IF 3.6 Q2 BIOTECHNOLOGY & APPLIED MICROBIOLOGY Current Research in Biotechnology Pub Date : 2023-01-01 DOI:10.1016/j.crbiot.2023.100143
Yu Liu , Tao Liu , Danfeng Jiang
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引用次数: 1

Abstract

Sweat contains a wealth of health-related biomarkers, which has been a promising resource for personalized real-time monitoring at molecular level. Emergence of non-enzymatic electrochemical sensor that simulates the enzyme catalysis utilizing the functional material further promotes the development of wearable sweat sensor, successfully addressing the limitations of enzyme sensing in sensitivity and stability. Thus, there is an urgent need for centering on the regulation of the nanostructure, combination and preparation method of functional materials to enhance the catalytic activity for enzyme-free detection of sweat biomarkers. This review aims to present the superiors of enzyme-free sensing on wearable sweat sensor, and provides guidance for material innovation, sensor design and system integration. Firstly, we primarily focus on the recent advances of novel functional nanomaterials in wearable non-enzymatic electrochemical sensor, and briefly describe the sensing principles for detecting biomarkers in sweat. Subsequently, the correlation between the electrochemical strategy and functional material is elaborately interpreted by coupling with the diverse molecular structures of the biomarkers and the pH changes of test environments. Finally, challenges and opportunities for wearable non-enzymatic electrochemical sensor in sweat sensing are delineated in the development of future personalized healthcare.

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用于可穿戴式汗液生物标志物监测的非酶电化学传感器:综述
汗液中含有丰富的与健康相关的生物标志物,已成为分子水平上个性化实时监测的有前途的资源。利用该功能材料模拟酶催化的非酶电化学传感器的出现,进一步促进了可穿戴式汗液传感器的发展,成功解决了酶传感在灵敏度和稳定性方面的局限性。因此,迫切需要围绕调控功能材料的纳米结构、组合和制备方法来增强其对汗液生物标志物无酶检测的催化活性。本文综述了无酶传感在可穿戴式汗液传感器上的研究进展,为材料创新、传感器设计和系统集成提供指导。首先,我们重点介绍了新型功能纳米材料在可穿戴非酶电化学传感器中的最新进展,并简要介绍了检测汗液中生物标志物的传感原理。随后,通过耦合生物标志物的不同分子结构和测试环境的pH变化,详细解释了电化学策略与功能材料之间的相关性。最后,展望了可穿戴式非酶电化学传感器在未来个性化医疗发展中的挑战与机遇。
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来源期刊
Current Research in Biotechnology
Current Research in Biotechnology Biochemistry, Genetics and Molecular Biology-Biotechnology
CiteScore
6.70
自引率
3.60%
发文量
50
审稿时长
38 days
期刊介绍: Current Research in Biotechnology (CRBIOT) is a new primary research, gold open access journal from Elsevier. CRBIOT publishes original papers, reviews, and short communications (including viewpoints and perspectives) resulting from research in biotechnology and biotech-associated disciplines. Current Research in Biotechnology is a peer-reviewed gold open access (OA) journal and upon acceptance all articles are permanently and freely available. It is a companion to the highly regarded review journal Current Opinion in Biotechnology (2018 CiteScore 8.450) and is part of the Current Opinion and Research (CO+RE) suite of journals. All CO+RE journals leverage the Current Opinion legacy-of editorial excellence, high-impact, and global reach-to ensure they are a widely read resource that is integral to scientists' workflow.
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