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生成一氧化氮(NO)和硝酰基(HNO)的连二亚硝酸酯(NONOates):新兴的商业机遇。

Nitric oxide (NO)- and nitroxyl (HNO)-generating diazeniumdiolates (NONOates): emerging commercial opportunities.

作者信息

Keefer Larry K

机构信息

National Cancer Institute at Frederick, Bldg. 538, MD 21702-1201, USA.

出版信息

Curr Top Med Chem. 2005;5(7):625-36. doi: 10.2174/1568026054679380.

Abstract

Diazeniumdiolate ions are convenient and, for a variety of applications, uniquely advantageous nitric oxide (NO) dosage forms. Ionic diazeniumdiolates generate bioactive NO in physiological fluids truly spontaneously (i. e., without metabolism or redox activation), with reliable half-lives ranging from 2 seconds to 20 hours depending on the ion's structure. They are generally simple-to-prepare solids with excellent shelf life and high NO content - up to 40% by weight. Very importantly from the pharmaceutical point of view, the ionic diazeniumdiolates can be easily derivatized to prodrug forms that can be activated for NO release enzymatically, photolytically, or by slowed hydrolysis, allowing for rational design of strategies for targeting pharmacological delivery of NO to sites of need without unwanted collateral exposure of other NO-sensitive compartments. In addition to their world-wide sale for use in probing the chemical biology of NO, published proof-of-concept studies with diazeniumdiolates suggest several more lucrative applications. These include: converting existing drugs and biologicals to NO-releasing form to improve performance and/or extend patent life; diazeniumdiolating medical devices for improved biocompatibility; anticancer drug discovery; use as surgical aids and for wound repair; field generation of NO gas; and non-medical uses such as extending the post-harvest life of cut flowers. Future work aimed at exploiting the full clinical potential of diazeniumdiolate technology will be pursued in this laboratory and strongly encouraged in others, with a concurrent fundamental research effort to broaden the knowledge base from which further opportunities can be inferred [e. g., exploiting the very recent finding that some diazeniumdiolates appear to offer a versatile platform from which nitroxyl (HNO)-generating prodrugs can be developed].

摘要

重氮二醇盐离子是方便的,并且在各种应用中具有独特优势的一氧化氮(NO)剂型。离子型重氮二醇盐在生理流体中真正自发地产生生物活性NO(即无需代谢或氧化还原激活),根据离子结构,其可靠的半衰期范围为2秒至20小时。它们通常是易于制备的固体,具有出色的保质期和高NO含量 - 高达40%(重量)。从药物学角度来看非常重要的是,离子型重氮二醇盐可以很容易地衍生化为前药形式,这些前药可以通过酶促、光解或缓慢水解激活以释放NO,从而能够合理设计将NO靶向递送至需要部位的策略,而不会对其他对NO敏感的区室造成不必要的附带暴露。除了在全球范围内销售用于探索NO的化学生物学外,已发表的关于重氮二醇盐的概念验证研究还表明了其他一些更有利可图的应用。这些应用包括:将现有药物和生物制品转化为释放NO的形式以提高性能和/或延长专利寿命;对医疗器械进行重氮二醇盐处理以提高生物相容性;抗癌药物发现;用作手术辅助工具和伤口修复;现场产生NO气体;以及非医疗用途,如延长切花的采后寿命。本实验室将开展旨在充分发挥重氮二醇盐技术临床潜力的未来工作,并强烈鼓励其他实验室开展此类工作,同时进行基础研究以拓宽知识基础,从中推断出更多机会[例如,利用最近的发现,即一些重氮二醇盐似乎提供了一个通用平台,从中可以开发出产生硝酰基(HNO)的前药]。

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