Yang Junjie, Tang Liting, Li Lin, Wu Xiongzhi, Yan Liqiang
College of Chemistry and Bioengineering, Guilin University of Technology, Guilin, 541006, Guangxi, P.R. China.
J Fluoresc. 2025 May;35(5):2641-2674. doi: 10.1007/s10895-024-03770-1. Epub 2024 Jun 13.
Zinc(II) ions (Zn) play crucial roles in the growth, propagation, and metabolism of animals, plants, and humans. Abnormal concentrations of Zn in the environment and living organisms pose potential risks to environmental protection and human health. Therefore, it is imperative to develop rapid, reliable and in-situ detection methods for Znin both environmental and biological contexts. Furthermore, effective analytical methods are required for diagnosing diseases and understanding physiological metabolic mechanisms associated with Zn concentration levels. Organic small-molecule fluorescent probes offer advantages such as fast, reliable, convenient, non-destructive detection capabilities and have significant application potential in Zn detection and bioimaging; thus garnering extensive attention. Over the past two years alone, various organic small-molecule probes for Zn based on different detection mechanisms and fluorophores have been rapidly developed. However, these probes still exhibit several limitations that need further resolution. In light of this context, we provide a comprehensive summary of the detection mechanisms, performance characteristics, and application scope of Zn fluorescence probes since year 2022 while highlighting their advantages. We also propose solutions to address existing issues with these probes and outline future directions for their advancement. This review aims to serve as a valuable reference source offering insights into the development of advanced organic small-molecule-based fluorescence probes specifically designed for detecting Zn.
锌离子(Zn)在动物、植物和人类的生长、繁殖及新陈代谢过程中发挥着关键作用。环境和生物体内锌的浓度异常会对环境保护和人类健康构成潜在风险。因此,开发用于在环境和生物环境中快速、可靠且原位检测锌的方法势在必行。此外,还需要有效的分析方法来诊断疾病以及了解与锌浓度水平相关的生理代谢机制。有机小分子荧光探针具有快速、可靠、便捷、无损检测等优势,在锌检测和生物成像方面具有显著的应用潜力,因而受到广泛关注。仅在过去两年间,基于不同检测机制和荧光团的各类用于检测锌的有机小分子探针就得到了迅速发展。然而,这些探针仍存在一些需要进一步解决的局限性。鉴于此,我们全面总结了自2022年以来锌荧光探针的检测机制、性能特点及应用范围,同时突出了它们的优势。我们还针对这些探针现存的问题提出了解决方案,并概述了其未来的发展方向。本综述旨在为开发专门用于检测锌的先进有机小分子荧光探针提供有价值的参考依据。