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马尿液和血浆中差向异构兴奋剂——地塞米松和倍他米松的分离与鉴定:一种反相手性色谱法

Separation and identification of the epimeric doping agents - Dexamethasone and betamethasone in equine urine and plasma: A reversed phase chiral chromatographic approach.

作者信息

Karatt Tajudheen K, Sayed Ramy, Nalakath Jahfar, Perwad Zubair, Albert Peter H, Abdul Khader K K

机构信息

Equine Forensic Unit, Central Veterinary Research Laboratory, PO Box 597, Dubai, United Arab Emirates.

Equine Forensic Unit, Central Veterinary Research Laboratory, PO Box 597, Dubai, United Arab Emirates.

出版信息

Steroids. 2018 Dec;140:77-82. doi: 10.1016/j.steroids.2018.10.003. Epub 2018 Oct 5.

Abstract

Chirality is one of the most important considerations when controlling doping. The epimeric corticosteroids dexamethasone and betamethasone are significantly potent and long-acting, and they are highly abused in equestrian sports. The scope of this study was to develop a simple and reliable analytical method for simultaneously identifying and separating regularly abused co-eluting corticosteroids in equine urine and plasma. In this paper, we present a simple and rapid method for the chiral separation and identification of epimeric mixtures of dexamethasone and betamethasone using a Thermo Q Exactive high resolution accurate mass spectrometer. The high resolution accurate mass spectrometer system provided extremely high sensitivity, enabling detection of each isomer at a very low concentration from complex biological matrices. Chromatographic separation was performed using amylose and cellulose chiral columns. Reversed phase media showed very good potential for providing a successful chiral resolution in LC-MS analysis. This study also focused on optimizing the mobile phase for elution strength, nature of the organic modifier, additives, and column temperature.

摘要

在控制兴奋剂使用时,手性是最重要的考虑因素之一。差向异构的皮质类固醇地塞米松和倍他米松具有显著的强效和长效作用,在马术运动中被大量滥用。本研究的范围是开发一种简单可靠的分析方法,用于同时鉴定和分离马尿液和血浆中经常被滥用的共洗脱皮质类固醇。在本文中,我们提出了一种使用赛默飞世尔Q Exactive高分辨率精确质量质谱仪对手性地塞米松和倍他米松差向异构体混合物进行分离和鉴定的简单快速方法。高分辨率精确质量质谱仪系统提供了极高的灵敏度,能够从复杂的生物基质中以极低浓度检测每种异构体。使用直链淀粉和纤维素手性柱进行色谱分离。反相介质在液相色谱-质谱分析中显示出提供成功手性拆分的良好潜力。本研究还专注于优化流动相的洗脱强度、有机改性剂的性质、添加剂和柱温。

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