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首页> 外文期刊>Journal of Asian natural products research >A fragmentation study on four C19-diterpenoid alkaloids by electrospray ionization ion-trap time-of-flight tandem mass spectrometry
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A fragmentation study on four C19-diterpenoid alkaloids by electrospray ionization ion-trap time-of-flight tandem mass spectrometry

机译:电喷雾电离离子阱飞行时间串联质谱分析四种C19-二萜生物碱

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High-resolution electrospray ionization ion-trap time-of-flight tandem mass spectrometry (HR-ESI-IT-TOF-MSn) in positive-ion mode was used to determine the accurate masses and fragmentation pathways of four C-19-diterpenoid alkaloids, aconitine (1), yunnaconitine (2), crassicauline A (3), and benzoylmesaconine (4). The [M+H](+) ions of compounds 1-4 were readily observed in conventional single-stage mass spectrometry. Based on the MS1-6 analyses, detailed fragmentation rules of the four compounds were proposed. The neutral losses of AcOH, MeOH, H2O, CO, C2H4, PhCOOH and p-OMePhCOOH segments were the characteristic eliminations from the precursor ions due to the presence of acetyl, methoxyl, hydroxyl, N-ethyl, benzoyl and p-methoxyl-benzoyl units in the structures. Benefited from the high resolution of the mass analyzer, the loss of 28Da corresponding to CO or CH4 segment in product ions was unambiguously distinguished. The losing sequence of the main substituent groups was summarized as: C(8)-acetyl>C(16)-methotyl>C(15)-hydroxyl>C(6)-methoxyl>C(1)-methoxyl/C(3)-hydroxyl>C(18)-methoxylC(13)-hydroxyl. The sequential loss of (16)-methoxyl moiety and CO (generating from enol-ketone tautomerism) groups could be recognized as the characteristic eliminations for the compounds with C(16)-methoxyl and C(15)-hydroxyl groups simultaneously. The application of HR-ESI-IT-TOF-MSn technique to investigate the fragmentation of C-19-diterpenoid alkaloids provided useful information to understand their fragmentation behaviors.
机译:阳离子模式下的高分辨率电喷雾电离离子阱飞行时间串联质谱(HR-ESI-IT-TOF-MSn)用于确定四种C-19-二萜生物碱的准确质量和碎片化途径,乌头碱(1),芸香碱(2),头孢类碱A(3)和苯甲酰基美沙可碱(4)。在常规单级质谱法中很容易观察到化合物1-4的[M + H](+)离子。基于MS1-6分析,提出了四种化合物的详细裂解规则。 AcOH,MeOH,H2O,CO,C2H4,PhCOOH和p-OMePhCOOH链段的中性损失是由于存在乙酰基,甲氧基,羟基,N-乙基,苯甲酰基和对甲氧基-苯甲酰基而导致的前体离子的特征消除结构中的单位。得益于质量分析仪的高分辨率,可以清楚地区分对应于产物离子中CO或CH4片段的28Da损失。主要取代基的丢失序列总结为:C(8)-乙酰基> C(16)-甲基> C(15)-羟基> C(6)-甲氧基> C(1)-甲氧基/ C(3 )-羟基> C(18)-甲氧基 C(13)-羟基。 (16)-甲氧基部分和CO(从烯醇-酮互变异构体产生)基团的顺序丢失可以被认为是同时具有C(16)-甲氧基和C(15)-羟基化合物的特征消除。 HR-ESI-IT-TOF-MSn技术在研究C-19-二萜生物碱片段化中的应用为了解其片段化行为提供了有用的信息。

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