Velosa Diana C, Dunham Andrew J, Rivera Marcus E, Neal Shon P, Chouinard Christopher D
Chemistry Program, Department of Biomedical and Chemical Engineering and Sciences, Florida Institute of Technology, Melbourne, Florida 32904, United States.
J Am Soc Mass Spectrom. 2022 Sep 7;33(9):1761-1771. doi: 10.1021/jasms.2c00164. Epub 2022 Aug 1.
Steroids are an important class of biomolecules studied for their role in metabolism, development, nutrition, and disease. Although highly sensitive GC- and LC-MS/MS-based methods have been developed for targeted quantitation of known steroid metabolites, emerging techniques including ion mobility (IM) have shown promise in improved analysis and capacity to better identify unknowns in complex biological samples. Herein, we couple LC-IM-MS/MS with structurally selective reactions targeting hydroxyl and carbonyl functional groups to improve IM resolution and structural elucidation. We demonstrate that 1,1-carbonyldiimidazole derivatization of hydroxyl stereoisomer pairs such as testosterone/epitestosterone and androsterone/epiandrosterone results in increased IM resolution with ΔCCS > 15%. Additionally, performing this in parallel with derivatization of the carbonyl group by Girard's Reagent P resulted in unique products based on relative differences in number of each functional group and C17 alkylation. These changes could be easily deciphered using the combination of retention time, collision cross section, accurate mass, and MS/MS fragmentation pattern. Derivatization by Girard's Reagent P, which contains a fixed charge quaternary amine, also increased the ionization efficiency and could be explored for its potential benefit to sensitivity. Overall, the combination of these simple and easy derivatization reactions with LC-IM-MS/MS analysis provides a method for improved analysis of known target analytes while also yielding critical structural information that can be used for identification of potential unknowns.
类固醇是一类重要的生物分子,因其在新陈代谢、发育、营养和疾病中的作用而受到研究。尽管已经开发出基于气相色谱和液相色谱-串联质谱的高灵敏度方法用于已知类固醇代谢物的靶向定量分析,但包括离子淌度(IM)在内的新兴技术在改进分析以及更好地识别复杂生物样品中未知物的能力方面已显示出前景。在此,我们将液相色谱-离子淌度-串联质谱与针对羟基和羰基官能团的结构选择性反应相结合,以提高离子淌度分辨率和结构解析能力。我们证明,对羟基立体异构体对(如睾酮/表睾酮和雄甾酮/表雄甾酮)进行1,1-羰基二咪唑衍生化可使离子淌度分辨率提高,碰撞截面差值(ΔCCS)>15%。此外,将此操作与用吉拉德试剂P对羰基进行衍生化并行进行,会基于每个官能团数量和C17烷基化的相对差异产生独特的产物。利用保留时间、碰撞截面、精确质量和串联质谱碎片模式的组合,可以轻松解读这些变化。含有固定电荷季铵盐的吉拉德试剂P衍生化还提高了电离效率,并且可以探索其对灵敏度的潜在益处。总体而言,这些简单易行的衍生化反应与液相色谱-离子淌度-串联质谱分析相结合,提供了一种改进已知目标分析物分析的方法,同时还能产生可用于识别潜在未知物的关键结构信息。