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Structure Elucidation of the Diagnostic Product Ion at m/z 97 Derived from Androst-4-en-3-One-Based Steroids by ESI-CID and IRMPD Spectroscopy

机译:通过EsI-CID和IRmpD光谱法对衍生自雄甾-4-和-3-酮类固醇的m / z 97的诊断产物离子进行结构鉴定

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摘要

Structure elucidation of steroids by mass spectrometry has been of great importance to various analytical arenas and numerous studies were conducted to provide evidence for the composition and origin of (tandem) mass spectrometry-derived product ions used to characterize and identify steroidal substances. The common product ion at m/z 97 generated from androst-4-ene-3-one analogs has been subject of various studies, including stable isotope-labeling and (high resolution/high accuracy) tandem mass spectrometry, but its gas-phase structure has never been confirmed. Using high resolution/high accuracy mass spectrometry and low resolution tandem mass spectrometry, density functional theory (DFT) calculation, and infrared multiple photon dissociation (IRMPD) spectroscopy employing a free electron laser, the structure of m/z 97 derived from testosterone was assigned to protonated 3-methyl-2-cyclopenten-1-one. This ion was identified in a set of six cyclic C6H9O+ isomers as computed at the B3LYP/6-311++G(2d,2p) level of theory (protonated 3-methyl-2-cyclopenten-1-one, 2-methyl-2-cyclopenten-1-one and 2-cyclohexen-1-one). Product ions of m/z 97 obtained from MS2 and MS3 experiments of protonated 3-methyl-2-cyclopenten-1-one, 2-methyl-2-cyclopenten-1-one, 2-cyclohexen-1-one, and testosterone corroborated the suggested gas-phase ion structure, which was eventually substantiated by IRMPD spectroscopy yielding a spectrum that convincingly matched the predicted counterpart. Finally, the dissociation pathway of the protonated molecule of testosterone to m/z 97 was revisited and an alternative pathway was suggested that considers the exclusion of C-10 along with the inclusion of C-5, which was experimentally demonstrated with stable isotope labeling.
机译:对质谱法的结构阐明对各种分析竞技场具有重要的是,进行了许多研究,以提供用于表征和鉴定甾体物质的(串联)质谱衍生产物离子的组成和起源的证据。来自Androst-4-EnE-3-One类似物产生的M / Z 97的常用产物离子已经进行了各种研究,包括稳定同位素标记和(高分辨率/高精度)串联质谱,但其气相结构从未得到证实。使用高分辨率/高精度质谱和低分辨率串联质谱,密度函数理论(DFT)计算和红外多光子解离(IRMPD)光谱采用自由电子激光,分配了衍生自测试睾酮的M / Z 97的结构质子化3-甲基-2-环戊烯-1-一。在一组六个环状C6H9O +异构体中鉴定在B3LYP / 6-311 ++ G(2D,2P)理论水平(质子化3-甲基-2-环戊烯-1-一,2-甲基 - 2-环戊烯-1-酮和2-环己烯-1-一)。从MS2和MS3获得的M / Z 97的产物离子和MS3质子化3-甲基-2-环戊烯-1-1,2-甲基-2-环戊烯-1-One,2-环己酮-1-一,以及睾酮证实的实验建议的气相离子结构最终由IRMPD光谱证实,得到令人信服地匹配预测的对应物的光谱。最后,重新检测了睾酮至m / z 97质量分子的解离途径,提出了一种替代途径,其认为C-10与包含C-5的包含,其通过稳定的同位素标记进行实验证明。

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