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用于生物成像的多功能酶激活有机荧光探针的研究进展

Progress on Multifunction Enzyme-Activated Organic Fluorescent Probes for Bioimaging.

作者信息

Lian Jie, Wang Yipeng, Sun Xiaomeng, Shi Quanshi, Meng Fanda

机构信息

College of Criminal Investigation, People's Public Security University of China, Beijing, China.

School of Clinical and Basic Medical Sciences, Shandong First Medical University & Shandong Academy of Medical Sciences, Jinan, China.

出版信息

Front Chem. 2022 Jul 13;10:935586. doi: 10.3389/fchem.2022.935586. eCollection 2022.

Abstract

Bioimaging techniques are of increasing importance in clinical and related fields, which also have been successfully applied in the / imaging system. Due to the vital factor of enzymes in biological systems, enzyme-activated fluorophores, which could turn "on" the fluorescence signal from an "off" state, offer non-invasive and effective potential for the accurate bioimaging of particular cells, tissues, or bacteria. Comparing with the traditional imaging probes, enzyme-activated organic small fluorophores can visualize living cells within small animals with high sensitivity, high imaging resolution, non-invasiveness, and real-time feedback. In this mini review, well-designed enzyme-activated organic fluorescent probes with multiple functions are exclusively reviewed through the latest development and progress, focusing on probe design strategy, fluorescence property, enzyme activation process, and bioimaging applications. It is worth noting that multi-enzyme-activated strategies, which could avoid the production of "false-positive" signals in complex biological systems, effectively provide high selective and real-time bioimaging, indicating the exciting potential of intraoperative fluorescence imaging and diagnosis tools.

摘要

生物成像技术在临床及相关领域的重要性日益增加,并且也已成功应用于成像系统。由于酶在生物系统中的关键作用,能够将荧光信号从“关闭”状态转变为“开启”状态的酶激活荧光团,为特定细胞、组织或细菌的精确生物成像提供了非侵入性且有效的潜力。与传统成像探针相比,酶激活有机小分子荧光团能够以高灵敏度、高成像分辨率、非侵入性和实时反馈对小动物体内的活细胞进行可视化。在这篇小型综述中,通过最新的发展和进展对精心设计的具有多种功能的酶激活有机荧光探针进行了专门综述,重点关注探针设计策略、荧光特性、酶激活过程和生物成像应用。值得注意的是,多酶激活策略能够避免在复杂生物系统中产生“假阳性”信号,有效提供高选择性和实时生物成像,这表明术中荧光成像和诊断工具具有令人兴奋的潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5abd/9326025/6bb37d761ae2/fchem-10-935586-g001.jpg

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