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用于病原菌检测的氧化石墨烯基荧光生物传感器:综述

Graphene oxide-based fluorescent biosensors for pathogenic bacteria detection: A review.

作者信息

Liu Shiwu, Lu Fangguo, Chen Shanquan, Ning Yi

机构信息

Department of Microbiology, The Medicine School of Hunan University of Chinese Medicine, Changsha, Hunan, 410208, People's Republic of China.

Department of General Education, The School of Humanities and Social Science of the Chinese University of Hong Kong (Shenzhen Campus), Shenzhen, Guangdong, 518172, People's Republic of China.

出版信息

Anal Chim Acta. 2025 Feb 1;1337:343428. doi: 10.1016/j.aca.2024.343428. Epub 2024 Nov 17.

Abstract

BACKGROUND

Pathogenic bacteria are widespread in nature and can cause infections and various complications, thereby posing a severe risk to public health. Therefore, simple, rapid, sensitive, and cost-effective methods must be developed to detect pathogenic bacteria. Biosensors are prominent platforms for detecting pathogenic bacteria owing to their high sensitivity, specificity, repeatability, and stability. With the development of nanotechnology, graphene oxide (GO) has been increasingly introduced into the construction of fluorescent biosensors to enhance their performance owing to its unique physicochemical properties.

RESULTS

This review systematically summarizes the development of GO-based fluorescent biosensors for the detection of pathogenic bacteria. First, we introduce the functionalization and modification of GO. The design and signal amplification strategies for GO-based fluorescent biosensors are also discussed. Finally, we explore the challenges and new perspectives associated with this field, with the aim of facilitating the development of GO-based fluorescent sensing technologies to prevent the spread of multidrug-resistant bacteria.

SIGNIFICANCE

This review will aid in the development of high-performance biosensors for pathogenic bacterial assays.

摘要

背景

致病细菌在自然界广泛存在,可引发感染及各种并发症,从而对公众健康构成严重风险。因此,必须开发出简单、快速、灵敏且经济高效的方法来检测致病细菌。生物传感器因其高灵敏度、特异性、可重复性和稳定性,是检测致病细菌的突出平台。随着纳米技术的发展,氧化石墨烯(GO)因其独特的物理化学性质,越来越多地被引入到荧光生物传感器的构建中,以提高其性能。

结果

本综述系统地总结了基于GO的用于检测致病细菌的荧光生物传感器的发展。首先,我们介绍了GO的功能化和修饰。还讨论了基于GO的荧光生物传感器的设计和信号放大策略。最后,我们探讨了与该领域相关的挑战和新观点,旨在促进基于GO的荧光传感技术的发展,以防止多重耐药细菌的传播。

意义

本综述将有助于开发用于致病细菌检测的高性能生物传感器。

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