Guan Fuyu, Soma Lawrence R, Luo Yi, Uboh Cornelius E, Peterman Scott
Department of Clinical Studies, School of Veterinary Medicine, University of Pennsylvania, Kennett Square, Pennsylvania, USA.
Pennsylvania Equine Toxicology and Research Center, West Chester University, West Chester, Pennsylvania, USA.
J Am Soc Mass Spectrom. 2006 Apr;17(4):477-489. doi: 10.1016/j.jasms.2005.11.021. Epub 2006 Feb 17.
Anabolic steroids are structurally similar compounds, and their product-ion spectra obtained by tandem mass spectrometry under electrospray ionization conditions are quite difficult to interpret because of poly-ring structures and lack of a charge-retaining center in their chemical structures. In the present study, the fragmentation of nine anabolic steroids of interest to the racing industry was investigated by using triple quadrupole mass spectrometer, Fourier transform ion cyclotron resonance (FT-ICR) mass spectrometer, and a linear ion trap instrument. With the aid of an expert system software (Mass Frontier version 3.0), accurate mass measurements, and multiple stage tandem mass spectrometric (MS(n)) experiments, fragmentation pathways were elucidated for boldenone, methandrostenolone, tetrahydrogestrinone (THG), trenbolone, normethandrolone and mibolerone. Small differences in the chemical structures of the steroids, such as an additional double-bond or a methyl group, result in significantly different fragmentation pathways. The fragmentation pathways proposed in this paper allow interpretation of major product ions of other anabolic steroids reported by other researchers in a recent publication. The proposed fragmentation pathways are helpful for characterization of new steroids. The approach used in this study for elucidation of the fragmentation pathways is helpful in interpretation of complicated product-ion spectra of other compounds, drugs and their metabolites.
合成代谢类固醇是结构相似的化合物,在电喷雾电离条件下通过串联质谱法获得的它们的产物离子光谱由于多环结构以及其化学结构中缺乏电荷保留中心而很难解释。在本研究中,使用三重四极杆质谱仪、傅里叶变换离子回旋共振(FT-ICR)质谱仪和线性离子阱仪器研究了赛马行业感兴趣的九种合成代谢类固醇的裂解情况。借助专家系统软件(Mass Frontier版本3.0)、精确质量测量和多级串联质谱(MS(n))实验,阐明了苯丙酸诺龙、甲基雄烯醇酮、四氢孕三烯酮(THG)、群勃龙、诺乙雄龙和米勃酮的裂解途径。类固醇化学结构中的微小差异,如一个额外的双键或一个甲基,会导致显著不同的裂解途径。本文提出的裂解途径有助于解释其他研究人员在最近一篇出版物中报道的其他合成代谢类固醇的主要产物离子。所提出的裂解途径有助于新类固醇的表征。本研究中用于阐明裂解途径的方法有助于解释其他化合物、药物及其代谢物的复杂产物离子光谱。