首页> 外文期刊>The Journal of automatic chemistry >Differentiation between 3,4- and 4,15-Epoxyeudesmanolides by Electrospray Ionization Tandem Mass Spectrometry
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Differentiation between 3,4- and 4,15-Epoxyeudesmanolides by Electrospray Ionization Tandem Mass Spectrometry

机译:电喷雾电离串联质谱法区分3,4-和4,15-环氧双甘露醇

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We investigated the fragmentation of the eudesmanolide-type sesquiterpene lactones 1α-(4-hydroxymethacryloyloxy)-3α,4α-epoxy-8α-hydroxyeudesm-11(13)-6α,12-olide (1) and 1α-(2,3-epoxyangeloyloxy)-4α,15-epoxy-8α-hydroxyeudesm-11(13)-6α,12-olide (2) by electrospray ionization tandem mass spectrometry (ESI-MS/MS). The elimination of the different ester substituent at C(1) directly from protonated 1 and 2 (A) led to the formation of two regioisomer product ions B (A ? RCO2H). Further fragmentation of B resulted from consecutive eliminations of H2O and CO molecules. However, we identified four product ions that allowed for the differentiation between 3,4- and 4,15-epoxyeudesmanolides. The formation of these diagnostic ions was associated with the C(3)–O bond of compound 1, which propitiates the participation of the lone pair of the oxygen epoxide in the formation of B through a Grob-Wharton-type fragmentation, then resulting in an alternative fragmentation pathway. These data can be useful for the fast differentiation between epoxyeudesmanolide regioisomers directly from Dimerostemma extracts by liquid chromatography-tandem mass spectrometry (LC-MS/MS), as an alternative to NMR, or even for quantitation studies of these compounds using multiple reaction monitoring (MRM) scan.
机译:我们研究了奥地斯奈德型倍半萜烯内酯1α-(4-羟基甲基丙烯酰氧基)-3α,4α-环氧-8α-羟基eudesm-11(13)-6α,12-内酯(1)和1α-(2,3- (ESI-MS / MS)通过电喷雾电离串联质谱法(ESI-MS / MS)测得环氧环烷氧基)-4α,15-环氧-8α-羟基癸烯11(13)-6α,12-内酰胺(2)。直接从质子化的1和2(A)消除C(1)处不同的酯取代基,导致形成两个区域异构体产物离子B(A→RCO2H)。 B的进一步碎裂源于连续消除H2O和CO分子。但是,我们确定了四个产物离子,这些离子可区分3,4-和4,15-环氧双甘露醇。这些诊断离子的形成与化合物1的C(3)–O键相关,该键通过Grob-Wharton型断裂促进了环氧对的孤对参与B的形成,从而导致另一种碎裂途径。这些数据可用于通过液相色谱-串联质谱法(LC-MS / MS)直接从Dimerostemma提取物中直接分离出Diomerostemma提取物的环氧大马酚内酯区域异构体,或作为NMR的替代方法,甚至可用于使用多反应监测对这些化合物进行定量研究( MRM)扫描。

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