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首页> 外文期刊>Journal of mass spectrometry: JMS >Electrospray ionization tandem mass spectrometry of labdane-type acid diterpenes
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Electrospray ionization tandem mass spectrometry of labdane-type acid diterpenes

机译:耐热喷雾电离串联酸型酸性酸层串联质谱法

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摘要

Copaifera (Leguminoseae) species produce a commercially interesting oleoresin that displays several biological activities, including antimicrobial and anti-inflammatory properties. Labdane-type diterpenes are the main chemical constituents of these oleoresins, and copalic acid is the only compound that has been detected in all Copaifera oleoresins. In this study, we investigate some aspects of the gas-phase fragmentation reactions involved in the formation of the product ions from the deprotonated compounds (-)-ent-copalic acid (1), (-)-ent-3 beta-hydroxy-copalic acid (2), (-)-ent-3 beta-acetoxy-copalic acid (3), and (-)-ent-agathic acid (4) by electrospray ionization tandem mass spectrometry (ESI-MS/MS) and multiple stage mass spectrometry (MSn). Our results reveal that the product ion with m/z 99 is common to all the analyzed compounds, whereas the product ion with m/z 217 is diagnostic for compounds 2 and 3. Moreover, only compound 4 undergoes CO2 (44 u) and acetic acid (60 u) elimination from the precursor ion. Thermochemical data obtained by computational chemistry at the B3LYP/6-31G(d) level of theory support the proposed ion structures. These data helped us to identify these compounds in a crude commercial Copaifera langsdorffii oleoresin by selective multiple reaction monitoring (MRM). Finally, a precursor ion scan (PIS) strategy aided screening of labdane-type acid diterpenes other than 1 to 4 in the same Copaifera oleoresin sample and led us to propose the structures of 8,17-dihydro-ent-agathic acid (5) and 3-keto-ent-copalic acid (6), which have not been previously reported in Copaifera oleoresins.
机译:Copaifera(豆科)物种产生一种商业上有趣的油树脂,它具有多种生物活性,包括抗菌和抗炎特性。Labdane型二萜是这些油树脂的主要化学成分,而copalic acid是在所有Copaifera油树脂中检测到的唯一化合物。在这项研究中,我们研究了脱质子化合物(-)-ent-椰酸(1),(-)-ent-3β-羟基椰酸(2),(-)-ent-3β-乙酰氧基椰酸(3)的气相裂解反应的一些方面,通过电喷雾串联质谱(ESI-MS/MS)和多阶段质谱(MSn)测定(-)-ent龙舌酸(4)。我们的结果表明,所有分析的化合物都具有m/z 99的产物离子,而m/z 217的产物离子对化合物2和3具有诊断作用。此外,只有化合物4从前体离子中消除CO2(44 u)和乙酸(60 u)。计算化学在B3LYP/6-31G(d)理论水平上获得的热化学数据支持提出的离子结构。这些数据有助于我们通过选择性多反应监测(MRM)来鉴定商品化胡瓜油树脂中的这些化合物。最后,前体离子扫描(PIS)策略有助于在同一椰子油树脂样品中筛选除1到4之外的labdane型酸性二萜,并使我们提出了8,17-二氢-ent-龙舌草酸(5)和3-酮-ent-椰酸(6)的结构,这些结构之前在椰子油树脂中尚未报道。

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