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光触发的一氧化氮递送至恶性部位和感染部位。

Light-triggered nitric oxide delivery to malignant sites and infection.

机构信息

Department of Chemistry and Biochemistry, University of California, Santa Cruz, CA 95064, USA.

出版信息

Philos Trans A Math Phys Eng Sci. 2013 Jun 17;371(1995):20120368. doi: 10.1098/rsta.2012.0368. Print 2013 Jul 28.

Abstract

The discovery of nitric oxide (NO) as a signalling molecule in various physiological and pathological pathways has spurred research in the design of exogenous NO donors as drugs. In recent years, metal nitrosyls (NO complexes of metals) have been investigated as NO-donating agents. Results from our laboratory during the past few years have demonstrated that metal nitrosyls derived from designed ligands can deliver NO under the total control of light of various frequencies. Careful incorporation of these photoactive nitrosyls into polymer matrices has afforded a set of nitrosyl-polymer composites that can be used to make such NO delivery site-specific. The composite materials have shown excellent antineoplastic and antimicrobial actions in several in vitro experiments. This review highlights our key results in the context of recent developments in this area of NO donors that deliver NO on demand.

摘要

一氧化氮(NO)作为各种生理和病理途径中的信号分子的发现,激发了设计外源性 NO 供体作为药物的研究。近年来,金属亚硝酰基(金属的 NO 配合物)已被研究作为 NO 供体。过去几年中我们实验室的结果表明,源自设计配体的金属亚硝酰基可以在各种频率光的完全控制下输送 NO。将这些光活性亚硝酰基精心掺入聚合物基质中,得到了一组亚硝酰聚合物复合材料,可用于制造具有这种特定 NO 输送部位的复合材料。在几项体外实验中,复合材料表现出优异的抗肿瘤和抗菌作用。本综述突出了我们在按需提供 NO 的 NO 供体这一领域的关键研究成果。

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