Huang Hong, Pan Shaobang, Yuan Bin, Wang Nvzhi, Shao Lingfei, Chen Zhen-E, Zhang Hai, Huang Wen-Zhang
Chongqing University of Science and Technology, Chongqing, 401331, China.
Zunyi Normal College, Zunyi, 563006, China.
J Fluoresc. 2024 Dec 13. doi: 10.1007/s10895-024-04016-w.
Fluorescent sensing technology has advantages such as high sensitivity, good selectivity, and easy operation. It is widely used in the environment and biomedical field and receives increasing attention from people. It is easy to modify the structure of the benzothiazole fluorophores, and adding the push-pull electronic system can regulate the optical properties of benzodiapylene molecules. As probes, its derivatives are widely used in biomedicine, catalysis, and materials. Therefore, this paper mainly describes the development in the detection of reactivated oxygen (HO HClO) and sulfides (HS) in the last six years (2019-2024) based on benzothiazole fluorescent probe, which will be classified according to the identification mechanism of probes to be summarized, and to explain their properties and applications in biological and food, providing some help for designing more sensitive and efficient fluorescent probe molecules.
荧光传感技术具有灵敏度高、选择性好、操作简便等优点。它在环境和生物医学领域有着广泛的应用,并受到人们越来越多的关注。苯并噻唑荧光团的结构易于修饰,引入推挽电子系统可以调节苯并二亚芘分子的光学性质。作为探针,其衍生物广泛应用于生物医学、催化和材料领域。因此,本文主要介绍了基于苯并噻唑荧光探针在过去六年(2019 - 2024年)中对活性氧(HO HClO)和硫化物(HS)检测的研究进展,将根据探针的识别机制进行分类总结,并阐述它们在生物和食品方面的性质及应用,为设计更灵敏高效的荧光探针分子提供一些帮助。