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膳食补充剂中合成代谢雄激素类固醇提取方法的开发及气相色谱-质谱分析:在兴奋剂检测中的应用

Development of an extraction method for anabolic androgenic steroids in dietary supplements and analysis by gas chromatography-mass spectrometry: Application for doping-control.

作者信息

Dahmani Hajer, Louati Kaouthar, Hajri Adel, Bahri Senda, Safta Fathi

机构信息

National Laboratory of Medicaments' Control, 13, Road of Jbel Lakhdhar, Bab Saadoun 1006, Tunis, Tunisia.

Scientific Research Department, El-Ain Post, Box N°204, 3042 Sfax, Tunisia.

出版信息

Steroids. 2018 Oct;138:134-160. doi: 10.1016/j.steroids.2018.08.001. Epub 2018 Aug 15.

Abstract

Several studies have highlighted that nutritional supplements may contain undeclared anabolic steroids that are banned by the International Olympic Committee/World Anti-Doping Agency. Any kind of abuse with these drugs is extremely dangerous because of their side effects. Thus, the control of food additives in order to protect the best consumer health and to limit fraudulent practices in the field of sports is essential. This paper describes a simple and effective qualitative gas chromatography-mass spectrometry (GC-MS) method to detect anabolic androgenic steroids (AAS): androsterone, nandrolene, dehydroepiandrosterone, 5ɑ-androstane-3β, 17β-diol, dihydrotestosterone, testosterone, methenolone acetate, methandienone, boldenone and fluoxymesterone, in food supplements. Methyltestosterone was used as internal standard. Target compounds were extracted with a mixture of N-pentane and di-ethylether (7.5:2.5, v/v). A good extraction recovery was obtained by our method for all the AAS (R > 88%). Crude extract was derivatized with N-methyl-N-trimethylsilyl-trifluoracetamide. Separation was performed on a GC connected to quadrupole MS detector using a 5% phenylmethylsiloxane fused silica capillary column (30 m × 0.25 mm i.d.; film thickness, 0.25 µm). Helium was used as carrier gas with a flow rate of 0.3 µl min (measured at 6.1 psi 190 °C). The MS was operated in electron ionization mode (70 eV) and in selected ion monitoring (SIM). The mass spectra of the standard compounds were acquired in full SCAN mode (50-700 m/z) by infusion of a reference solution at 50 µg/ml. Three higher diagnostic ions were monitored for each compound of interest. All AAS get separated with good peak shapes and resolution factor. The total analysis time by our optimised method was only 20 min. The developed method was validated according to Laboratories International Standard regulations for specificity, precision in both liquid and solid matrixes, and memory effect. The Tolerance Interval was judged true. The limit of detection was about 10 ng/g for solid samples and 10 ng/ml for liquid samples. The developed method was then applied to the research of steroids in nine Tunisian commercially dietary supplements using for each compound of interest SIM mode for screening then SCAN mode for confirmation. One of the monitoring samples was positive to methandienone not declared on the label. Our analytical method can be beneficial for AAS screening in dietary supplements.

摘要

多项研究强调,营养补充剂可能含有未申报的合成代谢类固醇,这些类固醇被国际奥委会/世界反兴奋剂机构禁止。由于这些药物的副作用,任何形式的滥用都极其危险。因此,为保护消费者的最佳健康并限制体育领域的欺诈行为,对食品添加剂进行管控至关重要。本文描述了一种简单有效的气相色谱 - 质谱联用(GC - MS)定性方法,用于检测营养补充剂中的合成代谢雄性类固醇(AAS):雄酮、诺龙、脱氢表雄酮、5α - 雄甾烷 - 3β,17β - 二醇、双氢睾酮、睾酮、美替诺龙醋酸酯、美雄酮、勃地龙和氟甲睾酮。甲基睾酮用作内标。目标化合物用正戊烷和乙醚的混合物(7.5:2.5,v/v)萃取。我们的方法对所有AAS都获得了良好的萃取回收率(R > 88%)。粗提物用N - 甲基 - N - 三甲基硅烷基 - 三氟乙酰胺进行衍生化。使用5%苯基甲基硅氧烷熔融石英毛细管柱(30 m×0.25 mm内径;膜厚,0.25 µm)在连接四极杆质谱检测器的气相色谱仪上进行分离。氦气用作载气,流速为0.3 µl/min(在6.1 psi 190 °C下测量)。质谱仪在电子电离模式(70 eV)和选择离子监测(SIM)下运行。通过注入浓度为50 µg/ml的参考溶液,在全扫描模式(50 - 700 m/z)下采集标准化合物的质谱图。对每种目标化合物监测三个较高的诊断离子。所有AAS都以良好的峰形和分离因子分离。我们优化后的方法总分析时间仅为20分钟。根据国际实验室标准法规,对所开发的方法进行了特异性、液体和固体基质中的精密度以及记忆效应的验证。公差区间判定为合格。固体样品的检测限约为10 ng/g,液体样品的检测限约为10 ng/ml。然后将所开发的方法应用于九种突尼斯市售膳食补充剂中类固醇的研究,对每种目标化合物采用SIM模式进行筛查,然后采用SCAN模式进行确认。其中一个监测样品对标签上未申报的美雄酮呈阳性。我们的分析方法对膳食补充剂中AAS的筛查可能有益。

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