Schönafinger K
HMR Research Chemistry, Frankfurt, Germany.
Farmaco. 1999 May 30;54(5):316-20. doi: 10.1016/s0014-827x(99)00031-2.
An overview of the different heterocyclic NO-releasing compounds is given. Mesoionic heterocycles like sydnone imines are one example. This class is discussed on the synthesis and the mechanism of NO formation from Molsidomine and its first metabolite SIN-1. Furthermore, 1,2,3,4 oxatriazolium olates and imidates are presented in an example of the synthesis of GEA-3175. Heterocyclic N-oxides are another group of compounds capable of NO release under certain conditions. This class is discussed in the example of furoxane carboxamides like CAS-1609, and some SAR-data show the great impact of intramolecular hydrogen bridges on their in vitro activity. Each class of compounds requires different cofactors for NO release: sydnone imines need oxidants like oxygen, furoxanes are converted to NO via reaction with thioles.
本文对不同的杂环一氧化氮释放化合物进行了综述。中氮茚类杂环化合物如西多胺亚胺就是一个例子。本文讨论了此类化合物中硝普钠及其首个代谢产物SIN-1的合成及一氧化氮形成机制。此外,以GEA-3175的合成实例介绍了1,2,3,4-恶三唑鎓醇盐和亚胺酯。杂环氮氧化物是另一类在特定条件下能够释放一氧化氮的化合物。本文以呋咱甲酰胺类化合物如CAS-1609为例进行了讨论,一些构效关系数据表明分子内氢键对其体外活性有很大影响。每类化合物释放一氧化氮都需要不同的辅助因子:西多胺亚胺需要氧气等氧化剂,呋咱类化合物通过与硫醇反应转化为一氧化氮。