Diazeniumdiolate Ions as Leaving Groups in Anomeric Displacement Reactions: A Protection−Deprotection Strategy for Ionic Diazeniumdiolates
- 24 September 2005
- journal article
- Published by American Chemical Society (ACS) in Journal of the American Chemical Society
- Vol. 127 (41) , 14188-14189
- https://doi.org/10.1021/ja054510a
Abstract
Diazeniumdiolate ions [R2N-N(O)=N-O-] are of growing interest pharmacologically for their ability to generate up to two molar equivalents of bioactive nitric oxide (NO) spontaneously on protonating the amino nitrogen. Accordingly, their stability increases as the pH is raised. Here we show that the corresponding beta-glucosides [R2N-N(O)=N-O-Glc] decreased in stability with pH; when R2N was diethylamino, the rate equation was kobs = ko + kOH- [OH-], where ko = 7.8 x 10-7 s-1 and kOH- = 5.3 x 10-3 M-1 s-1. The primary products were 1,6-anhydroglucose and the regenerated R2N-N(O)=N-O- ion. The results were qualitatively similar to those of beta-glucosyl fluoride and p-nitrophenoxide, whose hydrolyses have been rationalized as proceeding via a glycal oxide intermediate. This chemistry offers a convenient strategy for protecting heat- and acid-sensitive diazeniumdiolate ions during manipulations that would otherwise destroy them. As an example, a poly(urethane) film that generated NO in physiological buffer at a surface flux comparable to that of the mammalian vascular endothelium was prepared by glucosylating the ionic diazeniumdiolate group attached to the diol monomer before reacting it with the bis-isocyanate, then removing the saccharide with base when the protecting group was no longer needed.Keywords
This publication has 5 references indexed in Scilit:
- The Secondary Amine/Nitric Oxide Complex Ion R2N[N(O)NO]- as Nucleophile and Leaving Group in SNAr ReactionsThe Journal of Organic Chemistry, 2001
- Reduced platelet activation and thrombosis in extracorporeal circuits coated with nitric oxide release polymersCritical Care Medicine, 2000
- S-Nitrosothiol detectionPublished by Elsevier ,1996
- A re-investigation of the kinetics of alkaline degradation of phenyl β-d-glucopyranoside and some other glycosidesCarbohydrate Research, 1981
- Scope and mechanism of carbohydrase action. Stereocomplementary hydrolytic and glucosyl-transferring actions of glucoamylase and glucodextranase with alpha- and beta-D-glucosyl fluoride.Journal of Biological Chemistry, 1981