Anal Chem. 2020 Apr 7;92(7):5064-5072. doi: 10.1021/acs.analchem.9b05435. Epub 2020 Mar 11.
On the basis of the pyridazinone scaffold and photoinduced electron transfer (PET) mechanism, we designed a smart nitric oxide (NO) probe, , with high sensitivity and selectivity. exhibited a rapid response to both exogenous and endogenous NO. This probe can also be used in tracking and investigating NO generation in animal tissue. In the myocardial fibrosis model for mice, exhibited a powerful imaging property in vivo as a result of unravelling the progressive relationship between the generation of myocardial NO and the occurrence of myocardial fibrosis.
基于哒嗪酮骨架和光诱导电子转移(PET)机制,我们设计了一种高灵敏度和选择性的智能一氧化氮(NO)探针 。 对外源和内源性 NO 均表现出快速响应。该探针还可用于跟踪和研究动物组织中 NO 的产生。在小鼠心肌纤维化模型中, 由于揭示了心肌 NO 的产生与心肌纤维化发生之间的渐进关系,因此在体内表现出强大的成像特性。