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用于活性硫物种的基于活性的荧光探针

Activity-Based Fluorescent Probes for Reactive Sulfur Species.

作者信息

Xian Ming, Wang Yuqing, Du Conrad, Shieh Meg

机构信息

Department of Chemistry, Brown University, Providence, Rhode Island 02912, United States.

出版信息

Acc Chem Res. 2025 Sep 2;58(17):2804-2814. doi: 10.1021/acs.accounts.5c00483. Epub 2025 Aug 12.

DOI:10.1021/acs.accounts.5c00483
PMID:40793992
Abstract

ConspectusReactive sulfur species (RSS), such as hydrogen sulfide (HS), hydrogen per/polysulfide (HS, > 1), hydropersulfides (RSSH), and polysulfides (RSR, > 2), are believed to play regulatory roles in redox biology. However, their exact mechanisms of action still need to be clarified. The instability of various RSS under physiological environments and their highly reactive natures pose unique challenges to the research on these species. Considering these challenges, fluorescent probes that can rapidly and specifically detect each individual RSS in biological settings are critical tools for RSS research. This Account follows our laboratory's development of such probes.We began by exploring the specific reactions of HS that could distinguish HS from other RSS. Based on the reactions, we developed several series of HS probes. We then investigated the reactions of other RSS, including HS, sulfane sulfur, HSNO, etc., and developed the corresponding probes. Our research on these probes also inspired us to develop other related chemical tools, including HS scavengers and a general structural template for xanthene-based near-infrared dyes. This Account summarizes our work in this field and systematically explains how each probe/chemical tool was designed and evaluated. This Account covers the following key points: (1) the rational chemical design of each probe template; (2) the evaluation and mechanistic insights for each probe template; and (3) the properties and applications of the probes/chemical tools.

摘要

综述

反应性硫物种(RSS),如硫化氢(HS)、过/多硫化氢(HS,n > 1)、氢过硫化物(RSSH)和多硫化物(RSR,n > 2),被认为在氧化还原生物学中发挥调节作用。然而,它们确切的作用机制仍有待阐明。各种RSS在生理环境下的不稳定性及其高反应性给这些物种的研究带来了独特的挑战。考虑到这些挑战,能够在生物环境中快速、特异性地检测每种单独RSS的荧光探针是RSS研究的关键工具。本综述介绍了我们实验室对这类探针的开发情况。

我们首先探索了HS能与其他RSS区分开来的特异性反应。基于这些反应,我们开发了几个系列的HS探针。然后,我们研究了包括HS、硫烷硫、HSNO等其他RSS的反应,并开发了相应的探针。我们对这些探针的研究还启发我们开发了其他相关的化学工具,包括HS清除剂和用于基于呫吨的近红外染料的通用结构模板。本综述总结了我们在该领域的工作,并系统地解释了每个探针/化学工具是如何设计和评估的。本综述涵盖以下要点:(1)每个探针模板的合理化学设计;(2)每个探针模板的评估和作用机制见解;(3)探针/化学工具的性质和应用。

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