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基于电喷雾电离离子阱串联质谱引导的野木瓜属鸭公树生物碱部分的植物化学研究。

Phytochemical study of the alkaloidal fractions of Unonopsis duckei R. E. Fr. guided by electrospray ionisation ion-trap tandem mass spectrometry.

机构信息

Department of Chemistry, Federal University of Amazonas, 69077-000, Manaus, AM, Brazil.

出版信息

Phytochem Anal. 2014 Jan-Feb;25(1):45-9. doi: 10.1002/pca.2458. Epub 2013 Aug 6.

Abstract

INTRODUCTION

The Unonopsis genus is a promising source of aporphinoid alkaloids, substances with great biological potential. These alkaloids have a well-defined mass spectrometry fragmentation pattern that, together with previous phytochemical knowledge, can guide the isolation of alkaloids not yet described for the genus.

OBJECTIVE

Isolate substances not yet described in the Unonopsis genus, guided by alkaloidal profile analyses of stem barks, twigs and leaves of Unonopsis duckei using electrospray ionisation ion-trap tandem mass spectrometry (ESI-IT/MS(n) ).

METHODS

Methanolic extracts from stem barks, twigs and leaves were submitted to a liquid-liquid, acid-base partitioning treatment to obtain the alkaloidal fractions. These fractions were analysed by direct infusion into an ESI-IT/MS(n) system. The major alkaloids observed for each fraction were submitted to fragmentation analysis.

RESULTS

The MS fragmentation patterns revealed the presence of alkaloids previously reported for Annonaceae, including nornuciferine, anonaine, asimilobine, liriodenine and lysicamine, known for the Unonopsis genus, as well as others that were not yet described for this genus. In this way, the proaporphine alkaloid glaziovine was isolated, as well as a mixture of the aporphine alkaloids glaucine and norglaucine, all described for the first time in the Unonopsis genus.

CONCLUSION

Mass spectrometry monitoring was fundamental to prioritise the isolation of substances not yet identified for the Unonopsis genus, dismissing known compounds and simplifying the phytochemical study.

摘要

简介

乌农比opsis 属是阿朴啡类生物碱的有前途的来源,这些物质具有巨大的生物潜力。这些生物碱具有明确的质谱碎裂模式,结合先前的植物化学知识,可以指导尚未描述为属的生物碱的分离。

目的

在乌农比opsis 属中分离尚未描述的物质,方法是使用电喷雾电离离子阱串联质谱(ESI-IT/MS(n))对乌农比opsis duckei 的茎皮、小枝和叶进行生物碱谱分析。

方法

将来自茎皮、小枝和叶的甲醇提取物进行液-液、酸碱分配处理,以获得生物碱部分。这些部分通过直接注入 ESI-IT/MS(n) 系统进行分析。对每个部分观察到的主要生物碱进行了碎片分析。

结果

MS 碎裂模式显示存在先前报道的 Annonaceae 生物碱,包括 nornuciferine、anonaine、asimilobine、liriodenine 和 lysicamine,已知存在于乌农比opsis 属中,以及其他尚未描述的生物碱。通过这种方式,分离出了前阿朴啡类生物碱 glaziovine,以及阿朴啡类生物碱 glaucine 和 norglaucine 的混合物,所有这些都首次在乌农比opsis 属中被描述。

结论

质谱监测对于优先分离尚未鉴定为乌农比opsis 属的物质至关重要,排除了已知化合物并简化了植物化学研究。

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