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用于高灵敏检测痕量生物标志物的基于纳米酶的生物传感器中的信号放大策略设计

Signal Amplification Strategy Design in Nanozyme-Based Biosensors for Highly Sensitive Detection of Trace Biomarkers.

作者信息

Wang Mengting, Liu Hongxing, Fan Kelong

机构信息

Guangdong Provincial Key Laboratory of Urology, Guangdong Engineering Research Center of Urinary Minimally Invasive Surgery Robot and Intelligent Equipment, Guangzhou Institute of Urology, Department of Urology, The First Affiliated Hospital of Guangzhou Medical University, Guangzhou Medical University, Guangzhou, 510230, China.

CAS Engineering Laboratory for Nanozyme, Key Laboratory of Biomacromolecules, Institute of Biophysics, Chinese Academy of Sciences, Beijing, 100101, China.

出版信息

Small Methods. 2023 Nov;7(11):e2301049. doi: 10.1002/smtd.202301049. Epub 2023 Oct 10.

Abstract

Nanozymes show great promise in enhancing disease biomarker sensing by leveraging their physicochemical properties and enzymatic activities. These qualities facilitate signal amplification and matrix effects reduction, thus boosting biomarker sensing performance. In this review, recent studies from the last five years, concentrating on disease biomarker detection improvement through nanozyme-based biosensing are examined. This enhancement primarily involves the modulations of the size, morphology, doping, modification, electromagnetic mechanisms, electron conduction efficiency, and surface plasmon resonance effects of nanozymes for increased sensitivity. In addition, a comprehensive description of the synthesis and tuning strategies employed for nanozymes has been provided. This includes a detailed elucidation of their catalytic mechanisms in alignment with the fundamental principles of enhanced sensing technology, accompanied by the presentation of quantitatively analyzed results. Moreover, the diverse applications of nanozymes in strip sensing, colorimetric sensing, electrochemical sensing, and surface-enhanced Raman scattering have been outlined. Additionally, the limitations, challenges, and corresponding recommendations concerning the application of nanozymes in biosensing have been summarized. Furthermore, insights have been offered into the future development and outlook of nanozymes for biosensing. This review aims to serve not only as a reference for enhancing the sensitivity of nanozyme-based biosensors but also as a catalyst for exploring nanozyme properties and their broader applications in biosensing.

摘要

纳米酶通过利用其物理化学性质和酶活性,在增强疾病生物标志物传感方面展现出巨大潜力。这些特性有助于信号放大和减少基质效应,从而提高生物标志物的传感性能。在这篇综述中,我们考察了过去五年中专注于通过基于纳米酶的生物传感改善疾病生物标志物检测的最新研究。这种增强主要涉及对纳米酶的尺寸、形态、掺杂、修饰、电磁机制、电子传导效率和表面等离子体共振效应的调控,以提高灵敏度。此外,还提供了对纳米酶合成和调控策略的全面描述。这包括根据增强传感技术的基本原理详细阐明其催化机制,并给出定量分析结果。此外,还概述了纳米酶在试纸条传感、比色传感、电化学传感和表面增强拉曼散射中的各种应用。此外,总结了纳米酶在生物传感应用中的局限性、挑战及相应建议。此外,还对纳米酶用于生物传感的未来发展和前景提出了见解。这篇综述的目的不仅是为提高基于纳米酶的生物传感器的灵敏度提供参考,也是探索纳米酶性质及其在生物传感中更广泛应用的催化剂。

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