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气相色谱-燃烧-同位素比质谱法测量运动兴奋剂控制中内源性雄激素同化类固醇的外部校准。

External calibration in gas chromatography-combustion-isotope ratio mass spectrometry measurements of endogenous androgenic anabolic steroids in sports doping control.

机构信息

Doping Control Laboratory of Athens, Olympic Athletic Centre of Athens (OAKA), Kifissias 37, 15123 Maroussi, Greece.

出版信息

J Chromatogr A. 2011 Aug 19;1218(33):5675-82. doi: 10.1016/j.chroma.2011.06.014. Epub 2011 Jun 17.

Abstract

An alternative calibration procedure for the gas chromatography-combustion-isotope ratio mass spectrometry (GC-C-IRMS) measurements of the World Antidoping Agency (WADA) Accredited Laboratories is presented. To alleviate the need for externally calibrated CO₂ gas for GC-C-IRMS analysis of urinary steroid metabolites, calibration using an external standard mixture solution of steroids with certified isotopic composition was investigated. The reference steroids of the calibration mixture and routine samples underwent identical instrumental processes. The calibration standards bracketed the entire range of the relevant δ¹³C values for the endogenous and exogenous steroids as well as their chromatographic retention times. The certified δ¹³C values of the reference calibrators were plotted in relation to measured m/z ¹³CO₂/¹²CO₂ (i.e. R(45/44)) mass spectrometric signals of each calibrator. δ¹³C values of the sample steroids were calculated from the least squares fit through the calibration curve. The effect of the external calibration on δ¹³C values, using the same calibration standards and set of urine samples but different brands of GC-C-IRMS instruments, was assessed by an interlaboratory study in the WADA Accredited Laboratories of Sydney, Australia and Athens, Greece. Relative correspondence between the laboratories for determination of androsterone, etiocholanolone, 5β-androstane-3α,17β-diacetate, and pregnanediacetate means were SD(δ¹³C)=0.12‰, 0.58‰, -0.34‰, and -0.40‰, respectively. These data demonstrate that accurate intralaboratory external calibration with certified steroids provided by United States Antidoping Agency (USADA) and without external CO₂ calibration is feasible and directly applicable to the WADA Accredited Laboratories for the harmonization of the GC-C-IRMS measurements.

摘要

介绍了一种世界反兴奋剂机构(WADA)认可实验室的气相色谱-燃烧-同位素比质谱(GC-C-IRMS)测量的替代校准程序。为了减轻 GC-C-IRMS 分析尿中类固醇代谢物时对外标校准 CO₂气体的需求,研究了使用具有认证同位素组成的类固醇外标混合溶液进行校准。校准混合物和常规样品中的参考类固醇经历了相同的仪器处理过程。校准标准涵盖了内源性和外源性类固醇以及它们的色谱保留时间的相关 δ¹³C 值的整个范围。参考校准剂的认证 δ¹³C 值与每个校准剂的测量 m/z ¹³CO₂/¹²CO₂(即 R(45/44)) 质谱信号相关联。样品类固醇的 δ¹³C 值是从通过校准曲线的最小二乘法拟合计算得出的。通过在澳大利亚悉尼和希腊雅典的 WADA 认可实验室进行的实验室间研究,评估了使用相同的校准标准和尿液样品但不同品牌的 GC-C-IRMS 仪器进行外部校准对 δ¹³C 值的影响。在确定雄酮、表雄烷酮、5β-雄烷-3α,17β-二乙酸酯和孕烷二乙酸酯的实验室间相关性时,相对应的平均值为 SD(δ¹³C)=0.12‰、0.58‰、-0.34‰ 和 -0.40‰。这些数据表明,使用美国反兴奋剂机构(USADA)提供的经认证的类固醇进行准确的内部实验室外部校准,而无需外部 CO₂ 校准,是可行的,并且可直接应用于 WADA 认可实验室,以实现 GC-C-IRMS 测量的协调。

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