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溴离子、次溴酸和相关过氧化物酶的有机荧光探针研究进展综述。

Advances in organic fluorescent probes for bromide ions, hypobromous acid and related eosinophil peroxidase-A review.

机构信息

Institute of Quality Standards and Testing Technology for Agro-Products, Henan Academy of Agricultural Sciences, Zhengzhou, 450002, China.

College of Tobacco Science, Henan Agricultural University, Zhengzhou, 450002, China.

出版信息

Anal Chim Acta. 2023 Mar 1;1244:340626. doi: 10.1016/j.aca.2022.340626. Epub 2022 Nov 14.

Abstract

Elemental bromine is among the essential elements for human health. In living organisms, bromide (Br) and hydrogen peroxide (HO) can be catalyzed by eosinophil peroxidase (EPO) to generate a reactive oxygen species (ROS), hypobromous acid (HOBr), which exhibits properties similar to those of hypochlorous acid (HOCl). Moreover, HOBr possesses strong oxidative and antibacterial properties, which are believed to play an important role in the neutrophil host defense system. However, overexpression or misexpression of HOBr can cause organismal and tissue damage, which is closely related to the development of various diseases. Therefore, an increasing number of studies has demonstrated physiological associations with the conversion of Br to HOBr. With the development of fluorescence imaging technology, developing fluorescent probes with novel structures and high selectivity to detect changes in Br, HOBr, and the related enzyme EPO levels in organisms has become very important. This paper summarizes Br, HOBr, and EPO fluorescent probes reported in recent years, including the design principles, mechanisms, optical properties, and bioapplications. Finally, the application prospects and challenges are also discussed.

摘要

溴元素是人体健康必需的元素之一。在生物体内,溴化物(Br)和过氧化氢(HO)可以被嗜酸性粒细胞过氧化物酶(EPO)催化生成活性氧物种(ROS),次溴酸(HOBr),其具有类似于次氯酸(HOCl)的性质。此外,HOBr 具有很强的氧化性和抗菌性,被认为在中性粒细胞宿主防御系统中发挥重要作用。然而,HOBr 的过表达或错误表达会导致机体和组织损伤,这与各种疾病的发展密切相关。因此,越来越多的研究表明 Br 向 HOBr 的转化与生理过程有关。随着荧光成像技术的发展,开发具有新颖结构和高选择性的荧光探针来检测生物体内 Br、HOBr 和相关酶 EPO 水平的变化变得非常重要。本文综述了近年来报道的 Br、HOBr 和 EPO 荧光探针,包括设计原理、作用机制、光学性质和生物应用。最后,还讨论了其应用前景和挑战。

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