Division of Nutritional Sciences, Cornell University, Savage Hall, Ithaca, NY 14853, USA.
Analyst. 2018 Feb 26;143(5):1124-1132. doi: 10.1039/c7an01398a.
Sports doping requires high precision carbon isotope ratio (CIR) analysis of endogenous steroids using gas chromatography-combustion isotope ratio mass spectrometry (GCC-IRMS), however methods are relatively slow and cumbersome. A cryofocusing fast GCC-IRMS (Cryofocus Fast GCC-IRMS) was developed and optimized with minimal peak broadening using a programmable temperature vaporization (PTV) inlet and a low dead volume narrow-bore continuous capillary combustion interface to an IRMS. PTV injection, followed with cryofocusing before steroid analytes were volatilized by a hot jet, was used to initiate chromatography. Compared to ramping temperature using a conventional GC oven, cryofocusing with hot jet volatilization reduced analysis time by a factor of 3 to 4 and reduced peak widths to ∼800 ms. Well separated peak isotope ratios were measured with SD(δC) < 0.5‰ over a range of 10-50 ng of each steroid on column and were accurate from 2 ng to 100 ng. Characterization of the current experimental system with well characterized pure steroid isotopic standards demonstrates how the technique can be applied to steroid mixtures derived from real urine samples. Cryofocus Fast GCC-IRMS advances toward the goal of routine CIR testing of steroids in all urine samples for doping control.
运动兴奋剂检测需要对内源性类固醇进行高精度的碳同位素比(CIR)分析,通常使用气相色谱-燃烧同位素比质谱法(GCC-IRMS),但该方法相对较慢且繁琐。本研究开发并优化了冷聚焦快速气相色谱-燃烧同位素比质谱(Cryofocus Fast GCC-IRMS),该方法使用可编程温度汽化(PTV)进样口和低死体积窄口径连续毛细管燃烧接口,最大限度地减少峰展宽,从而实现对 IRMS 的快速分析。PTV 进样后,类固醇分析物在热喷射作用下挥发之前进行冷聚焦,从而启动色谱分析。与传统 GC 炉的程序升温相比,冷聚焦与热喷射挥发相结合可将分析时间缩短 3 至 4 倍,峰宽减小至约 800ms。在柱上对每个类固醇 10-50ng 的范围内,良好分离的峰同位素比的测定值 SD(δC)<0.5‰,且 2ng 至 100ng 的测定值均准确。使用具有良好特征的纯类固醇同位素标准品对当前实验系统进行表征,证明了该技术如何应用于从实际尿液样品中提取的类固醇混合物的分析。Cryofocus Fast GCC-IRMS 朝着常规兴奋剂控制中所有尿液样品中类固醇 CIR 测试的目标迈进。