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Searching for new long-term urinary metabolites of metenolone and drostanolone using gas chromatography-mass spectrometry with a focus on non-hydrolysed sulfates

机译:使用气相色谱 - 质谱法寻找脱胶和甲醇酮的新的长期尿代谢物,重点在非水解硫酸盐上

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Sulfated metabolites have been shown to have potential as long-term markers of anabolic-androgenic steroid (AAS) abuse. In 2019, the compatibility of gas chromatography-mass spectrometry (GC-MS) with non-hydrolysed sulfated steroids was demonstrated, and this approach allowed the incorporation of these compounds in a broad GC-MS initial testing procedure at a later stage. However, research is needed to identify which are beneficial. In this study, a search for new long-term metabolites of two popular AAS, metenolone and drostanolone, was undertaken through two excretion studies each. The excretion samples were analysed using GC-chemical ionization-triple quadrupole MS (GC-CI-MS/MS) after the application of three separate sample preparation methodologies (i.e. hydrolysis withEscherichia coli-derived beta-glucuronidase,Helix pomatia-derived beta-glucuronidase/arylsulfatase and non-hydrolysed sulfated steroids). For metenolone, a non-hydrolysed sulfated metabolite, 1 beta-methyl-5 alpha-androstan-17-one-3 zeta-sulfate, was documented for the first time to provide the longest detection time of up to 17 days. This metabolite increased the detection time by nearly a factor of 2 in comparison with the currently monitored markers for metenolone in a routine doping control initial testing procedure. In the second excretion study, it prolonged the detection window by 25%. In the case of drostanolone, the non-hydrolysed sulfated metabolite with the longest detection time was the sulfated analogue of the main drostanolone metabolite (3 alpha-hydroxy-2 alpha-methyl-5 alpha-androstan-17-one) with a detection time of up to 24 days. However, the currently monitored main drostanolone metabolite in routine doping control, after hydrolysis of the glucuronide withE.coli, remained superior in detection time (i.e. up to 29 days).
机译:已显示硫酸盐代谢物具有作为合成雄激素类固醇(AAS)滥用的长期标记的潜力。 2019年,对气相色谱 - 质谱(GC-MS)与非水解硫酸化类固醇的相容性进行了说明,并且该方法在较晚的阶段将这些化合物掺入宽的GC-MS初始测试程序中。但是,需要研究以确定哪些是有益的。在这项研究中,通过每次排泄研究,寻找两种流行的AAS,脱胶和甲丁醇的新的长期代谢物。在施加三个单独的样品制备方法后(即水解Coli-ermivedβ-葡萄糖醛酸酶,螺旋POMATIA衍生的β-葡糖醛酸酶(即,在施用三种单独的样品制备方法后,通过GC-化学离子 - 三重四极杆MS(GC-CI-MS / MS)分析排泄样品。 /芳基硫酸酶和非水解硫酸化类固醇)。对于跖龙,第一次记录了一种非水解的硫酸化代谢物,1β-甲基-5α-和鼻甾醇-17-一硫酸盐,以提供最长17天的最长检测时间。与常规掺杂控制初始测试程序中的当前监测的亚仑酮标记相比,这种代谢物通过常规掺杂控制初始测试程序的当前监测的标记增加了近似的检测时间。在第二次排泄研究中,它延长了检测窗口25%。在替代醇酮的情况下,具有最长的检测时间的非水解硫酸盐代谢物是具有检测时间的主要替代醇代谢物(3α-羟基-2α-甲基-5α-Androstan-17-One)的硫酸化类似物最多24天。然而,当前监测的主要替代毒素代谢物在常规掺杂控制中,在葡萄糖醛糖苷的水解后,在检测时间(即最多29天)仍然优越。

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