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α-糖氧基酰胺的合成与表征,来源于氰基糖苷。

Synthesis and characterisation of α-Glycosyloxyamides derived from cyanogenic glycosides.

机构信息

Institute of Pharmaceutical Biology and Phytochemistry, Hittorfstr. 56, 48149 Münster, Germany.

出版信息

Phytochem Anal. 2010 Nov-Dec;21(6):575-81. doi: 10.1002/pca.1237.

Abstract

INTRODUCTION

After exposure to oxidative stress, the leaves of some cyanogenic plants contain primary α-glycosyloxyamides with structures corresponding to their original cyanogenic glycosides.

OBJECTIVES

The aim of this study was to prepare such amides from their nitrile precursors and to characterise the new substances in order to facilitate their early identification in forthcoming studies. Methods - A simple but highly specific method is described for the in-vitro synthesis of the amides from their nitrile glycoside precursors using the Radziszewski reaction with hydrogen peroxide and a single-step purification of the reaction product. A TLC method is presented for the preliminary and fast identification of the α-glycosyloxyamides.

RESULTS

Following this procedure, seven representative α-glycosyloxyamides, five of them new, were obtained and analytically characterised by means of (1) H, (13) C NMR and ATR-IR spectroscopy, highlighting the differences from their respective nitrile glycoside precursors.

CONCLUSION

Thus, α-glycosyloxyamides can be obtained in sufficient amounts and purity to serve as references for further studies on the catabolism of cyanogenic glycosides and the detoxification of cyanogenic foodplants using the new aspect of nitrile hydrolysis with (endogenous) hydrogen peroxide.

摘要

简介

在氧化应激后,一些含氰植物的叶子中含有与原始氰苷结构相对应的初级α-糖氧基酰胺。

目的

本研究旨在通过雷迪希泽夫斯基(Radziszewski)反应用双氧水从氰苷前体合成这些酰胺,并对新物质进行表征,以便于在即将开展的研究中尽早识别它们。方法-描述了一种简单但高度特异的方法,用于使用雷迪希泽夫斯基反应用双氧水和单步纯化反应产物从氰苷前体体外合成酰胺。提出了一种 TLC 方法用于初步和快速鉴定α-糖氧基酰胺。

结果

按照此程序,获得了七种代表性的α-糖氧基酰胺,其中五种为新化合物,通过(1)H、(13)C NMR 和 ATR-IR 光谱分析进行了分析鉴定,突出了它们与各自氰苷前体的差异。

结论

因此,可以获得足够数量和纯度的α-糖氧基酰胺,作为进一步研究氰苷代谢和利用内源性双氧水水解腈的新方法解毒含氰食物植物的参考。

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