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首页> 外文期刊>Journal of the American Society for Mass Spectrometry >Gas phase reaction of substituted isoquinolines to carboxylic acids in ion trap and triple quadrupole mass spectrometers after electrospray ionization and collision-induced dissociation
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Gas phase reaction of substituted isoquinolines to carboxylic acids in ion trap and triple quadrupole mass spectrometers after electrospray ionization and collision-induced dissociation

机译:电喷雾电离和碰撞诱导解离后,离子阱和三重四极杆质谱仪中取代异喹啉与羧酸的气相反应

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Within the mass spectrometric study of bisubstituted isoquinolines that possess great potential as prolylhydroxylase inhibitor drug candidates (e.g., FG-2216), unusually favored gas-phase formations of carboxylic acids after collisional activation were observed. The protonated molecule of [(1-chloro-4-hydroxy-isoquinoline-3-carbonyl)-amino]-acetic acid was dissociated, yielding the 1-chloro-4-hydroxy-isoquinoline-3-carboxylic acid methyleneamide cation. Subsequent dissociation caused the nominal elimination of 11 u that resulted from the loss of HCN and concomitant addition of oxygen to the product ion, which formed the protonated 1-chloro-4-hydroxy-isoquinoline-3-carboxylic acid. The preference of this structure under mass spectrometric conditions was substantiated by tandem mass spectrometry analyses using the corresponding methyl ester (1-chloro-4-hydroxy-isoquinoline-3-carboxylic acid methyl ester) that eliminated methylene (-14 u) upon collisional activation. Moreover, the major product ion of 1-chloro-4-hydroxy-isoquinoline-3-carboxylic acid, which resulted from the loss of water in MS3 experiments, restored the precursor ion structure by re-addition of H2O. Evidences for these phenomena were obtained by chemical synthesis of proposed gas-phase intermediates, H/D exchange experiments, high-resolution/high accuracy mass spectrometry at MSn level, and "ping-pong" analyses (MS7, in which the precursor ion was dissociated and the respective product ion isolated to regenerate the precursor ion for repeated dissociation. Based on these results, dissociation pathways for [(1-chloro-4-hydroxy-isoquinoline-3-carbonyl)-amino]-acetic acid were suggested that can be further utilized for the characterization of structurally related compounds or metabolic products in clinical, forensic, or doping control analysis.
机译:在具有很大潜力作为脯氨酰羟化酶抑制剂候选药物(例如FG-2216)的双取代异喹啉的质谱研究中,观察到碰撞活化后羧酸的气相形成异常地有利。使[(1-氯-4-羟基-异喹啉-3-羰基)-氨基]-乙酸的质子化分子解离,得到1-氯-4-羟基-异喹啉-3-羧酸亚甲基酰胺阳离子。随后的解离导致名义上的11 u消除,这是由于HCN的损失以及伴随向产物离子中加氧而形成的,从而形成了质子化的1-氯-4-羟基-异喹啉-3-羧酸。通过使用相应的甲酯(1-氯-4-羟基-异喹啉-3-羧酸甲酯)进行串联质谱分析,证实了该结构在质谱条件下的偏爱,该甲酯在碰撞活化后消除了亚甲基(-14 u) 。此外,由于在MS3实验中失水而导致的1-氯-4-羟基-异喹啉-3-羧酸的主要产物离子通过重新加入H2O恢复了前体离子的结构。这些现象的证据是通过拟议的气相中间体的化学合成,H / D交换实验,MSn级别的高分辨率/高精度质谱以及“乒乓”分析(MS7)获得的,其中前体离子为解离并分离出相应的产物离子以再生前驱体离子,以便重复解离,据此提出了[(1-氯-4-羟基-异喹啉-3-羰基)-氨基]-乙酸的解离途径可在临床,法医或兴奋剂对照分析中进一步用于表征结构相关的化合物或代谢产物。

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