荧光
RSS
硫化氢
多硫化物
杂蒽
硫黄
化学
组合化学
纳米技术
计算机科学
计算生物学
光化学
材料科学
生物
有机化学
物理
电极
物理化学
量子力学
电解质
操作系统
作者
Ming Xian,Yuqing Wang,Chunfang Du,Meg Shieh
标识
DOI:10.1021/acs.accounts.5c00483
摘要
ConspectusReactive sulfur species (RSS), such as hydrogen sulfide (H2S), hydrogen per/polysulfide (H2Sn, n > 1), hydropersulfides (RSSH), and polysulfides (RSnR, n > 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 H2S that could distinguish H2S from other RSS. Based on the reactions, we developed several series of H2S probes. We then investigated the reactions of other RSS, including H2Sn, sulfane sulfur, HSNO, etc., and developed the corresponding probes. Our research on these probes also inspired us to develop other related chemical tools, including H2S 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.
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