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使用基于荧光的染料检测细菌的策略。

Strategies of Detecting Bacteria Using Fluorescence-Based Dyes.

作者信息

Yoon Shin A, Park Sun Young, Cha Yujin, Gopala Lavanya, Lee Min Hee

机构信息

Department of Chemistry, Sookmyung Women's University, Seoul, South Korea.

出版信息

Front Chem. 2021 Aug 12;9:743923. doi: 10.3389/fchem.2021.743923. eCollection 2021.

Abstract

Identification of bacterial strains is critical for the theranostics of bacterial infections and the development of antibiotics. Many organic fluorescent probes have been developed to overcome the limitations of conventional detection methods. These probes can detect bacteria with "off-on" fluorescence change, which enables the real-time imaging and quantitative analysis of bacteria and . In this review, we outline recent advances in the development of fluorescence-based dyes capable of detecting bacteria. Detection strategies are described, including specific interactions with bacterial cell wall components, bacterial and intracellular enzyme reactions, and peptidoglycan synthesis reactions. These include theranostic probes that allow simultaneous bacterial detection and photodynamic antimicrobial effects. Some examples of other miscellaneous detections in bacteria have also been described. In addition, this review demonstrates the validation of these fluorescent probes using a variety of biological models such as gram-negative and -positive bacteria, antibiotic-resistant bacteria, infected cancer cells, tumor-bearing, and infected mice. Prospects for future research are outlined by presenting the importance of effective and detection of bacteria and development of antimicrobial agents.

摘要

细菌菌株的鉴定对于细菌感染的诊疗和抗生素的研发至关重要。为克服传统检测方法的局限性,人们已开发出许多有机荧光探针。这些探针可通过“关-开”荧光变化来检测细菌,从而实现对细菌的实时成像和定量分析。在本综述中,我们概述了能够检测细菌的荧光染料开发方面的最新进展。描述了检测策略,包括与细菌细胞壁成分的特异性相互作用、细菌和细胞内酶反应以及肽聚糖合成反应。其中包括可同时进行细菌检测和光动力抗菌作用的诊疗探针。还介绍了细菌中其他杂项检测的一些实例。此外,本综述展示了使用多种生物学模型(如革兰氏阴性和阳性细菌、耐抗生素细菌、受感染的癌细胞、荷瘤和受感染小鼠)对这些荧光探针进行的验证。通过阐述有效检测细菌和开发抗菌剂的重要性,概述了未来研究的前景。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d69c/8397417/1ac55077e51f/fchem-09-743923-g001.jpg

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