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多功能分子杂化体系光释放一氧化氮:优势、陷阱和机遇。

Multifunctional Molecular Hybrids Photoreleasing Nitric Oxide: Advantages, Pitfalls, and Opportunities.

机构信息

PhotoChemLab, Department of Drug and Health Sciences, University of Catania, I-95125 Catania, Italy.

出版信息

J Med Chem. 2024 Oct 10;67(19):16932-16950. doi: 10.1021/acs.jmedchem.4c01038. Epub 2024 Jul 15.

Abstract

The multifaceted role nitric oxide (NO) plays in human physiology and pathophysiology has opened new scenarios in biomedicine by exploiting this free radical as an unconventional therapeutic against important diseases. The difficulties in handling gaseous NO and the strict dependence of the biological effects on its doses and location have made the light-activated NO precursors, namely NO photodonors (NOPDs), very appealing by virtue of their precise spatiotemporal control of NO delivery. The covalent integration of NOPDs and additional functional components within the same molecular skeleton through suitable linkers can lead to an intriguing class of multifunctional photoactivatable molecular hybrids. In this Perspective, we provide an overview of the recent advances in these molecular constructs, emphasizing those merging NO photorelease with targeting, fluorescent reporting, and phototherapeutic functionalities. We will highlight the rational design behind synthesizing these molecular hybrids and critically describe the advantages, drawbacks, and opportunities they offer in biomedical research.

摘要

一氧化氮(NO)在人类生理学和病理生理学中扮演的多面角色,通过将这种自由基用作治疗重要疾病的非常规疗法,为生物医学开辟了新的前景。由于气态 NO 难以处理,并且其生物效应严格依赖于剂量和位置,因此光激活的 NO 前体,即一氧化氮光供体(NOPD),由于其对 NO 传递的精确时空控制,非常有吸引力。通过合适的连接子,将 NOPD 和其他功能组件共价整合到同一个分子骨架内,可以得到一类有趣的多功能光激活型分子杂合体。在本观点中,我们概述了这些分子构建体的最新进展,重点介绍了将 NO 光释放与靶向、荧光报告和光治疗功能相结合的进展。我们将强调合成这些分子杂合体背后的合理设计,并批判性地描述它们在生物医学研究中提供的优势、缺点和机会。

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