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毛发中合成代谢类固醇的分析:豚鼠体内的时间进程

Analysis of anabolic steroids in hair: time courses in guinea pigs.

作者信息

Shen Min, Xiang Ping, Yan Hui, Shen Baohua, Wang Mengye

机构信息

Department of Forensic Toxicology, Institute of Forensic Sciences, Ministry of Justice, Shanghai Key laboratory of Forensic Medicine, Shanghai, PR China.

出版信息

Steroids. 2009 Sep;74(9):773-8. doi: 10.1016/j.steroids.2009.04.008. Epub 2009 May 3.

Abstract

Sensitive, specific, and reproducible methods for the quantitative determination of eight anabolic steroids in guinea pig hair have been developed using LC/MS/MS and GC/MS/MS. Methyltestosterone, stanozolol, methandienone, nandrolone, trenbolone, boldenone, methenolone and DHEA were administered intraperitoneally in guinea pigs. After the first injection, black hair segments were collected on shaved areas of skin. The analysis of these segments revealed the distribution of anabolic steroids in the guinea pig hair. The major components in hair are the parent anabolic steroids. The time courses of the concentrations of the steroids in hair (except methenolone, which does not deposit in hair) demonstrated that the peak concentrations were reached on days 2-4, except stanozolol, which peaked on day 10 after administration. The concentrations in hair appeared to be related to the physicochemical properties of the drug compound and to the dosage. These studies on the distribution of drugs in the hair shaft and on the time course of their concentration changes provide information relevant to the optimal time and method of collecting hair samples. Such studies also provide basic data that will be useful in the application of hair analysis in the control of doping and in the interpretation of results.

摘要

已采用液相色谱/串联质谱法(LC/MS/MS)和气相色谱/串联质谱法(GC/MS/MS)开发出灵敏、特异且可重复的方法,用于定量测定豚鼠毛发中的八种合成代谢类固醇。对豚鼠腹腔注射甲基睾酮、司坦唑醇、美雄酮、诺龙、群勃龙、勃地龙、美替诺龙和脱氢表雄酮。首次注射后,在剃毛的皮肤区域收集黑色毛发段。对这些毛发段的分析揭示了合成代谢类固醇在豚鼠毛发中的分布情况。毛发中的主要成分是母体合成代谢类固醇。毛发中类固醇浓度的时间进程(美替诺龙除外,其不在毛发中沉积)表明,除司坦唑醇在给药后第10天达到峰值外,其他类固醇在第2 - 4天达到峰值浓度。毛发中的浓度似乎与药物化合物的物理化学性质和剂量有关。这些关于药物在毛干中的分布及其浓度变化时间进程的研究,为毛发样本的最佳采集时间和方法提供了相关信息。此类研究还提供了基础数据,有助于在兴奋剂检测控制中应用毛发分析及解释检测结果。

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