Fraix Aurore, Sortino Salvatore
Laboratory of Photochemistry, Department of Drug Sciences, University of Catania, 95125 Catania (Italy).
Chem Asian J. 2015 May;10(5):1116-25. doi: 10.1002/asia.201403398. Epub 2015 Feb 3.
The multifaceted role nitric oxide (NO) plays in human physiology and pathophysiology has stimulated a massive interest on NO-releasing compounds for therapeutic purposes. A main issue associated with use of NO donors is the precise spatiotemporal control of the NO release, as its effects are strictly site- and dose-dependent. NO photochemical precursors permit surmounting this difficulty since triggering with light offers an exquisite control of location and timing of NO delivery. On the other hand, the combination of NO photodonors with fluorescent components remains an urgent need for image-guided phototherapeutic treatments based on the use of NO. Fluorescence techniques permit not only an easy tracking of the photoprecursor in a biological environment but also the real-time quantification of the NO photoreleased therein in a non-invasive fashion. In this Focus Review we seek to provide an overview of recent advances in photoactivable platforms developed in our and other laboratories which combine the photoregulated release of NO with fluorescent functionalities. We shall focus attention on NO photoreleasing systems exhibiting 1) persistent fluorescence and 2) photoactivable fluorescence signals, highlighting their logical design and potential developments for phototheranostics.
一氧化氮(NO)在人体生理和病理生理过程中所起的多方面作用激发了人们对用于治疗目的的NO释放化合物的浓厚兴趣。与使用NO供体相关的一个主要问题是NO释放的精确时空控制,因为其作用严格依赖于位点和剂量。NO光化学前体能够克服这一困难,因为光触发可实现对NO递送的位置和时间的精确控制。另一方面,将NO光供体与荧光成分相结合仍然是基于NO使用的图像引导光疗治疗的迫切需求。荧光技术不仅能够在生物环境中轻松追踪光前体,还能以非侵入性方式对其中光释放的NO进行实时定量。在本聚焦综述中,我们旨在概述我们实验室和其他实验室开发的可光激活平台的最新进展,这些平台将NO的光调节释放与荧光功能相结合。我们将重点关注呈现1)持续荧光和2)可光激活荧光信号的NO光释放系统,突出它们的合理设计以及光诊疗的潜在发展。