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二维气相色谱-切换技术在兴奋剂检测中类固醇同位素比质谱分析中的应用。

Two-dimensional gas chromatography with heart-cutting for isotope ratio mass spectrometry analysis of steroids in doping control.

机构信息

King's College London, UK.

出版信息

Drug Test Anal. 2012 Dec;4(12):962-9. doi: 10.1002/dta.1379. Epub 2012 Jul 3.

Abstract

The accuracy and precision of gas chromatography combustion isotope ratio mass spectrometry (GC-C-IRMS) measurements are highly dependent on analyte purity. Reliable analysis of urinary steroids for doping control therefore requires extensive and time-consuming sample preparation (i.e. liquid chromatography fraction collection) prior to GC-C-IRMS analysis. The use of two-dimensional GC (GC-GC) with heart-cutting (Deans Switch) as a possible approach to reduce the sample purification required for IRMS analysis is described herein. The system uses a low thermal mass oven (LTM) incorporated into an existing GC-C-IRMS system. GC-GC allowed the use of a cyanopropyl/phenyl column in the first dimension to optimize the separation of underivatized steroids, while a phenyl-methylpolysiloxane column in the second dimension focuses the selectively cut analytes into narrower peaks for more sensitive and reliable MS analysis. In addition, to confirm analyte identity, eluent from the second GC was split, with 20 % entering a scanning MS, and 80 % flowing to the IRMS. As a proof concept, the developed method was then used to analyze a single spot urine (5 ml) from an individual receiving T therapy (2 × 50 mg sachets of Testogel(®)). The T delta value (-27.8 ‰, [T] = 38 ng/ml) was clearly distinct from 11-ketoetiocholanolone (-22.5 ‰) (used as an endogenous reference compound (ERC)), indicating T as being of exogenous origin. The simultaneous analysis by the scanning MS yielded a full scan mass spectrum of the same chromatographic peak, thus confirming the peak to be T.

摘要

气相色谱-燃烧-同位素比质谱(GC-C-IRMS)测量的准确性和精密度高度依赖于分析物的纯度。因此,为了进行兴奋剂控制的尿液类固醇分析,需要在 GC-C-IRMS 分析之前进行广泛且耗时的样品制备(即液相色谱馏分收集)。本文描述了使用二维气相色谱(GC-GC)和切割(Dean 切换)作为减少 IRMS 分析所需样品纯化的一种可能方法。该系统使用低热质量炉(LTM)集成到现有的 GC-C-IRMS 系统中。GC-GC 允许在第一维中使用氰丙基/苯基柱来优化未衍生类固醇的分离,而在第二维中使用苯基-甲基聚硅氧烷柱将选择性切割的分析物聚焦成更窄的峰,以进行更灵敏和可靠的 MS 分析。此外,为了确认分析物的身份,从第二根 GC 中分出洗脱液,其中 20%进入扫描 MS,80%进入 IRMS。作为一个证明概念,然后使用开发的方法分析了接受 T 治疗(2×50mg 泰诺戈凝胶(Testogel(®))的个体的单个尿斑(5ml)。T 的 δ 值(-27.8‰,[T]=38ng/ml)明显不同于 11-酮替唑烷(-22.5‰)(用作内源性参考化合物(ERC)),表明 T 来自外源性。扫描 MS 的同时分析得到了相同色谱峰的全扫描质谱,从而确认该峰为 T。

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