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Structure-efficiency relationship of photoinduced electron transfer-triggered nitric oxide releasers

机译:光诱导电子转移触发一氧化氮释放剂的结构-效率关系

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摘要

Spatiotemporally controllable nitric oxide (NO) releasers are required for biological studies and as candidate therapeutic agents. Here, we investigate the structure-efficiency relationship of a series of photoinduced electron transfer-triggered NO releasers based on our reported yellowish-green light-controllable NO releaser, NO-Rosa. The distance between the NO-releasing N-nitrosoaminophenol moiety and the rosamine antenna moiety was critical for efficient NO release. Notably, substitution at the phenolic hydroxyl group blocked NO release. We synthesized NO-Rosa-Gal bearing D-galactose (Gal) at this location, and showed that hydrolysis by β-galactosidase restored the photoresponse. This represents proof-of-concept of a strategy for highly specific control of NO release by using a double-lock system involving both enzymatic reactivation and photo-control.
机译:生物学研究需要时空可控的一氧化氮(NO)释放剂,并应作为候选治疗剂。在这里,我们基于我们报道的黄绿色光可控NO释放剂NO-Rosa,研究了一系列光诱导电子转移触发NO释放剂的结构-效率关系。释放NO的N-亚硝基氨基苯酚部分与罗斯明触角之间的距离对于有效释放NO至关重要。值得注意的是,酚羟基上的取代阻止了NO的释放。我们在此位置合成了带有D-半乳糖(Gal)的NO-Rosa-Gal,并显示通过β-半乳糖苷酶的水解可恢复光响应。这代表了通过使用涉及酶促活化和光控制的双重锁定系统来高度特异性地控制NO释放的策略的概念验证。

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