一氧化氮
荧光
亚硝化
原位
反应性(心理学)
化学
双光子激发显微术
光化学
生物化学
光学
医学
病理
有机化学
物理
替代医学
作者
Zhiqiang Mao,Hongwei� Jiang,Zhen Li,Cheng Zhong,Wei Zhang,Zhihong Liu
出处
期刊:Chemical Science
[Royal Society of Chemistry]
日期:2017-01-01
卷期号:8 (6): 4533-4538
被引量:127
摘要
In situ fluorescence imaging of nitric oxide (NO) is a powerful tool for studying the critical roles of NO in biological events. However, the selective imaging of NO is still a challenge because most currently available fluorescent probes rely on the o-phenylenediamine (OPD) recognition site, which reacts with both NO and some abundant reactive carbonyl species (RCS) (such as dehydroascorbic acid and methylglyoxal) and some reactive oxygen/nitrogen species (ROS/RNS). To address this problem, a new fluorescent probe, NCNO, based on the N-nitrosation of aromatic secondary amine was designed to bypass the RCS, ROS, and RNS interference. As was expected, the probe NCNO could recognize NO with pronounced selectivity and sensitivity among ROS, RNS, and RCS. The probe was validated by detecting NO in live cells and deep tissues owing to its two-photon excitation and red-light emission. It was, hence, applied to monitor NO in ischemia reperfusion injury (IRI) in mice kidneys by two-photon microscopy for the first time, and the results vividly revealed the profile of NO generation in situ during the renal IRI process.
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