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采用 UHPLC-MS/MS 在线 SPE 样品预处理技术,快速灵敏地筛查人尿中的氧雄龙及其主要代谢物 17-表氧雄龙。

Fast and Sensitive Screening of Oxandrolone and Its Major Metabolite 17-Epi-Oxandrolone in Human Urine by UHPLC-MS/MS with On-Line SPE Sample Pretreatment.

机构信息

Department of Pharmaceutical Analysis and Nuclear Pharmacy, Faculty of Pharmacy, Comenius University in Bratislava, Odbojarov 10, 832 32 Bratislava, Slovakia.

Biomedical Research Center of the Slovak Academy of Sciences in Bratislava, 84510 Bratislava, Slovakia.

出版信息

Molecules. 2021 Jan 18;26(2):480. doi: 10.3390/molecules26020480.

Abstract

Oxandrolone, a synthetic testosterone analog, is used for the treatment of several diseases associated with weight loss. Unfortunately, oxandrolone is abused by many athletes and bodybuilders due to its strong anabolic effect. We have developed and validated a highly sensitive and rapid on-line SPE-UHPLC-MS/MS method for the determination of oxandrolone and simultaneous identification of its major metabolite 17-epi-oxandrolone in urine matrices. Enrichment of the analytes via an integrated solid-phase extraction was achieved using an Acquity UPLC BEH C18 Column. Subsequently, the chromatographic separation of the on-line preconcentrated sample fraction was achieved using an Acquity HSS T3 C18 Column. For the structural identification of these analytes, a high-resolution mass spectrometer Synapt-G2Si coupled to the Acquity M-class nano-LC system with ionKey source was used. A highly sensitive determination of oxandrolone was achieved using a tandem quadrupole mass spectrometer XEVO TQD. The method was successfully validated in the linear range of oxandrolone from 81.63 pg·mL (limit of quantification, LOQ) to 5000 pg·mL in the human urine matrix. It was applied to the analysis of real urine samples obtained from a healthy volunteer after the oral administration of one dose (10 mg) of oxandrolone. Concentration vs. time dependence was tested in the time interval of 4 h-12 days (after oral administration) to demonstrate the ability of the method to detect the renal elimination of oxandrolone from the human body. Favorable performance parameters along with successful application indicate the usefulness of the proposed method for its routine use in antidoping control labs.

摘要

氧雄龙,一种合成的睾酮类似物,用于治疗与体重减轻相关的几种疾病。不幸的是,由于其强烈的合成代谢作用,许多运动员和健美运动员滥用氧雄龙。我们已经开发并验证了一种高度敏感且快速的在线 SPE-UHPLC-MS/MS 方法,用于测定尿液基质中的氧雄龙及其主要代谢物 17-表氧雄龙。通过集成固相萃取对分析物进行富集,使用 Acquity UPLC BEH C18 柱。随后,使用 Acquity HSS T3 C18 柱对在线预浓缩样品部分进行色谱分离。为了对这些分析物进行结构鉴定,使用配备离子键源的高分辨率质谱仪 Synapt-G2Si 与 Acquity M 级纳流 LC 系统相连。使用串联四极杆质谱仪 XEVO TQD 实现了对氧雄龙的高灵敏度测定。该方法在人尿基质中氧雄龙的线性范围为 81.63 pg·mL(定量下限,LOQ)至 5000 pg·mL 内成功验证。该方法应用于口服 10 mg 氧雄龙后一位健康志愿者的真实尿液样本的分析。在 4 h-12 天(口服后)的时间间隔内测试浓度与时间的依赖性,以证明该方法能够检测氧雄龙从人体中的肾脏排泄。良好的性能参数和成功的应用表明,该方法可用于常规的反兴奋剂控制实验室。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9794/7831107/0f3db2237e19/molecules-26-00480-g001.jpg

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