Williams T M, Kind A J, Hill D W
Department of Pharmaceutical Sciences, Laboratory, University of Connecticut, Storrs, Connecticut, USA.
J Vet Pharmacol Ther. 2000 Apr;23(2):57-66. doi: 10.1046/j.1365-2885.2000.00251.x.
Forensic drug testing of anabolic steroids in racing animals is required because of the potential for steroid abuse. Often when the metabolic products of an administered compound have not been identified, the analysis and verification of the administered compound is difficult. The objective of this study was to qualitatively identify the in vitro phase I biotransformation products of anabolic steroids that have a high potential for abuse in canines. The investigated steroids included testosterone, methyltestosterone, mibolerone and boldenone. Steroid biotransformation products were generated using beagle liver microsomes and analysed by high performance liquid chromatography (HPLC)/mass spectrometry (MS) with an electrospray ionization source. Characterization of steroid metabolites was based on HPLC retention, UV and mass spectra. The major testosterone metabolites were identified as androstenedione and 6beta- and 16alpha-hydroxytestosterone. 6beta-Hydroxymethyltestosterone was identified as a major metabolite in the methyltestosterone microsomal incubations. Several mibolerone metabolites were identified as monohydroxylated mibolerones as well as an oxidized mibolerone metabolite. Boldenone metabolites were identified as monohydroxylated boldenones, oxidized boldenone, and testosterone. This information should assist in the determination of anabolic steroid use in canines through the correlation of the urinary metabolites to the administered drug.
由于存在类固醇滥用的可能性,因此需要对参赛动物进行合成代谢类固醇的法医药物检测。通常,当所施用化合物的代谢产物尚未被识别时,对所施用化合物的分析和验证就会很困难。本研究的目的是定性鉴定在犬类中具有高滥用潜力的合成代谢类固醇的体外I相生物转化产物。所研究的类固醇包括睾酮、甲基睾酮、米勃龙和勃地酮。使用比格犬肝微粒体生成类固醇生物转化产物,并通过具有电喷雾电离源的高效液相色谱(HPLC)/质谱(MS)进行分析。类固醇代谢物的表征基于HPLC保留时间、紫外光谱和质谱。主要的睾酮代谢物被鉴定为雄烯二酮以及6β-和16α-羟基睾酮。6β-羟甲基睾酮被鉴定为甲基睾酮微粒体孵育中的主要代谢物。几种米勃龙代谢物被鉴定为单羟基化米勃龙以及一种氧化的米勃龙代谢物。勃地酮代谢物被鉴定为单羟基化勃地酮、氧化勃地酮和睾酮。这些信息应有助于通过将尿液代谢物与所施用药物相关联来确定犬类中合成代谢类固醇的使用情况。