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建立一种快速、靶向的 LC-IM-MS 方法用于检测合成代谢类固醇。

Development of a Rapid, Targeted LC-IM-MS Method for Anabolic Steroids.

机构信息

Department of Chemistry, Clemson University, Clemson, South Carolina 29625, United States.

出版信息

J Am Soc Mass Spectrom. 2023 Aug 2;34(8):1708-1714. doi: 10.1021/jasms.3c00162. Epub 2023 Jun 30.

Abstract

Anabolic steroids are of high biological interest due to their involvement in human development and disease progression. Additionally, they are banned in sport due to their performance-enhancing characteristics. Analytical challenges associated with their measurement stem from structural heterogeneity, poor ionization efficiency, and low natural abundance. Their importance in a variety of clinically relevant assays has prompted the consideration of integrating ion mobility spectrometry (IMS) into existing LC-MS assays, due primarily to its speed and structure-based separation capability. Herein we have optimized a rapid (2 min) targeted LC-IM-MS method for the detection and quantification of 40 anabolic steroids and their metabolites. First, a steroid-specific calibrant mixture was developed to cover the full range of retention time, mobility, and accurate mass. Importantly, this use of this calibrant mixture provided robust and reproducible measurements based on collision cross section (CCS) with interday reproducibility of <0.5%. Furthermore, the combined separation power of LC coupled to IM provided comprehensive differentiation of isomers/isobars within 6 different isobaric groups. Multiplexed IM acquisition also provided improved limits of detection, which were well below 1 ng/mL in almost all compounds measured. This method was also capable of steroid profiling, providing quantitative ratios (e.g., testosterone/epitestosterone, androsterone/etiocholanolone, etc.). Lastly, phase II steroid metabolites were probed in lieu of hydrolysis to demonstrate the ability to separate those analytes and provide information beyond total steroid concentration. This method has tremendous potential for rapid analysis of steroid profiles in human urine spanning a variety of applications from developmental disorders to doping in sport.

摘要

由于参与了人类发育和疾病进展,合成代谢类固醇具有很高的生物学意义。此外,由于其具有增强性能的特点,它们在运动中被禁止使用。由于其结构异构性、电离效率差和自然丰度低,与它们的测量相关的分析挑战。由于其速度和基于结构的分离能力,它们在各种临床相关测定中的重要性促使人们考虑将离子淌度谱 (IMS) 集成到现有的 LC-MS 测定中。在此,我们已经优化了一种快速(2 分钟)靶向 LC-IM-MS 方法,用于检测和定量 40 种合成代谢类固醇及其代谢物。首先,开发了一种特定于类固醇的校准混合物,以覆盖整个保留时间、迁移率和精确质量范围。重要的是,这种校准混合物的使用提供了基于碰撞截面 (CCS) 的稳健且可重现的测量,日内重现性<0.5%。此外,LC 与 IM 的组合分离能力提供了在 6 个不同等压组内异构体/同核异构体的全面区分。复用 IM 采集还提供了改进的检测限,几乎所有测量的化合物的检测限都低于 1ng/mL。该方法还能够进行类固醇分析,提供定量比(例如,睾酮/表睾酮,雄酮/乙基雄酮等)。最后,以替代水解的方式探测 II 期类固醇代谢物,以证明分离这些分析物并提供超出总类固醇浓度的信息的能力。该方法具有在各种应用中快速分析人类尿液中类固醇谱的巨大潜力,从发育障碍到运动中的兴奋剂。

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