纳米酶增强横向流动检测传感在临床诊断中的最新进展

IF 4.9 2区 化学 Q1 CHEMISTRY, ANALYTICAL Microchemical Journal Pub Date : 2024-09-07 DOI:10.1016/j.microc.2024.111602
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引用次数: 0

摘要

纳米酶具有独特的特性,包括稳定性高、催化活性可调、生产成本低于天然酶等,因此最近在生物传感领域引起了广泛的研究关注。侧流检测(LFA)是一种具有代表性的床旁检测(POCT)技术,以快速、方便地检测复杂基质中的生物目标而著称。通过利用其指数放大能力,纳米酶已被广泛应用于 LFA 生物传感器,以提高分析灵敏度。本综述阐述了用于临床诊断的基于纳米酶的 LFA 的最新进展。它简要概述了 LFA 的工作原理和类别,对纳米酶进行了分类,并讨论了它们在各种靶标诊断中的应用。最后,综述还探讨了基于纳米酶的 LFAs 目前面临的挑战和未来的发展方向。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

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Recent advances of nanozyme-enhanced lateral flow assay sensing in clinic diagnosis

Nanozymes have recently garnered significant research attention in biosensing due to their unique properties, including high stability, tunable catalytic activity, and lower production costs than natural enzymes. Lateral flow assays (LFAs) are a representative point-of-care testing (POCT) technique known for their rapid and convenient detection of biological targets in complex matrices. By leveraging their exponential amplification capabilities, nanozymes have been extensively employed in LFA biosensors to enhance analytical sensitivity. This review expounds on recent advancements in nanozyme-based LFAs for clinical diagnosis. It briefly summarizes the working principle and categories of LFAs, classifies nanozymes, and discusses their diagnostic applications for various targets. Finally, the review explores the current challenges and future directions of nanozyme-based LFAs.

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来源期刊
Microchemical Journal
Microchemical Journal 化学-分析化学
CiteScore
8.70
自引率
8.30%
发文量
1131
审稿时长
1.9 months
期刊介绍: The Microchemical Journal is a peer reviewed journal devoted to all aspects and phases of analytical chemistry and chemical analysis. The Microchemical Journal publishes articles which are at the forefront of modern analytical chemistry and cover innovations in the techniques to the finest possible limits. This includes fundamental aspects, instrumentation, new developments, innovative and novel methods and applications including environmental and clinical field. Traditional classical analytical methods such as spectrophotometry and titrimetry as well as established instrumentation methods such as flame and graphite furnace atomic absorption spectrometry, gas chromatography, and modified glassy or carbon electrode electrochemical methods will be considered, provided they show significant improvements and novelty compared to the established methods.
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