Amundsen Lotta Karina, Kokkonen Juha T, Rovio Stella, Sirén Heli
VTT Processes, P.O. Box 1602, Espoo, FIN-02044, Finland.
J Chromatogr A. 2004 Jun 18;1040(1):123-31. doi: 10.1016/j.chroma.2004.03.061.
A partial filling micellar electrokinetic capillary chromatography (PF-MEKC) separation of six anabolic androgenic steroids (androstenedione, metandienone, fluoxymesterone, methyltestosterone, 17-epimetandienone and testosterone) is introduced. The method utilises a mixed micellar solution consisting of sodium dodecyl sulphate (SDS) and sodium taurocholate. The analytes are detected with a photodiode array detector at 247 nm wavelength. Methyltestosterone is used as internal standard. The detection limits were 39 microg/L for androstenedione, 40 microg/L for testosterone, 45 microg/L for fluoxymesterone, 45-90 microg/L for 17-epimetandienone, 59 microg/L for methyltestosterone and 90 microg/L for metandienone. Linear correlation between concentration (0.1-5.0 mg/L) and detector response was obtained with r2 of 0.994 for fluoxymesterone, 0.998 for 17-epimetandienone and 0.999 for androstenedione, metandienone and testosterone. In addition, ionisation of the investigated compounds in electrospray mass spectrometry (ESI-MS) was studied in positive ion mode. The most intense signal (100%) was the protonated molecular ion [M + H]+, except for 17-epimetandienone, which gave its strongest signal at m/z corresponding to [M - H2O + H]+. Finally, separation and identification of fluoxymesterone, androstenedione and testosterone by PF-MEKC-ESI-MS is described. This is the first use of PF-MEKC and PF-MEKC-ESI-MS assays for anabolic androgenic steroids.
介绍了一种采用部分填充胶束电动毛细管色谱法(PF-MEKC)分离六种合成代谢雄激素类固醇(雄烯二酮、美雄酮、氟甲睾酮、甲基睾酮、17-表美雄酮和睾酮)的方法。该方法使用了由十二烷基硫酸钠(SDS)和牛磺胆酸钠组成的混合胶束溶液。采用光电二极管阵列检测器在247nm波长下检测分析物。以甲基睾酮作为内标。雄烯二酮的检测限为39μg/L,睾酮为40μg/L,氟甲睾酮为45μg/L,17-表美雄酮为45 - 90μg/L,甲基睾酮为59μg/L,美雄酮为90μg/L。在浓度(0.1 - 5.0mg/L)与检测器响应之间获得了线性相关性,氟甲睾酮的r2为0.994,17-表美雄酮为0.998,雄烯二酮、美雄酮和睾酮为0.999。此外,还研究了所研究化合物在电喷雾质谱(ESI-MS)正离子模式下的电离情况。除17-表美雄酮外,最强信号(100%)为质子化分子离子[M + H]+,17-表美雄酮在对应于[M - H2O + H]+的m/z处给出最强信号。最后,描述了通过PF-MEKC-ESI-MS对氟甲睾酮、雄烯二酮和睾酮的分离与鉴定。这是首次将PF-MEKC和PF-MEKC-ESI-MS分析方法用于合成代谢雄激素类固醇。