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高温液相色谱-同位素比质谱法测定尿液中合成代谢类固醇的碳同位素比值。

High-temperature liquid chromatography-isotope ratio mass spectrometry methodology for carbon isotope ratio determination of anabolic steroids in urine.

机构信息

Ghent University, Department of Diagnostic Sciences, Doping Control Laboratory, Ottergemsesteenweg 460, 9000, Gent, Belgium.

Ghent University, Department of Diagnostic Sciences, Doping Control Laboratory, Ottergemsesteenweg 460, 9000, Gent, Belgium.

出版信息

Anal Chim Acta. 2024 Oct 2;1324:343092. doi: 10.1016/j.aca.2024.343092. Epub 2024 Aug 13.

DOI:10.1016/j.aca.2024.343092
PMID:39218574
Abstract

BACKGROUND

Gas Chromatography Isotope Ratio Mass Spectrometry (GC-C-IRMS) has long been used in routine laboratories to determine the δC values of anabolic steroids in urine, differentiating between, e.g., endogenous and synthetic testosterone (T) in sports doping control. Until now, liquid chromatography (LC-IRMS) has not been used. The LC-IRMS setup doesn't allow organic solvents or modifiers in the mobile phase for δC determinations. Mid-to non-polar analytes such as steroids can be analysed in water heated to High Temperatures (HT, up to 200 °C) because at 200 °C has a similar polarity as 80/20 methanol/water at ambient temperature. In this work, we developed a method for steroids in urine, extending the application of the LC-IRMS to non-polar analytes in complex matrices.

RESULT

An HT-LC-IRMS method capable of determining the δC values of four steroids (i.e., testosterone (T), 5α-androstane-3α,17β-diol (ααβ), 5β-androstane-3α,17β-diol (βαβ) and pregnanetriol (PT)) in urine was developed and validated. Accuracy ranged from 0.23 ‰ (ααβ and βαβ) to 0.49 ‰ (T), and the detection limit was set at 10 ng mL (T, ααβ+βαβ). The validation data and a comparison of authentic urine samples analysed with HT-LC-IRMS and GC-C-IRMS indicated a comparable performance between HT-LC-IRMS and GC-C-IRMS.

SIGNIFICANCE

HT-LC-IRMS can be used to determine δC values of anabolic steroids, extending the applicability of both HT-LC and LC-IRMS to non-polar substances determined in a complex matrix in routine laboratory practice.

摘要

背景

气相色谱同位素比质谱(GC-C-IRMS)长期以来一直被用于常规实验室,以确定尿液中合成代谢类固醇的 δC 值,例如在运动兴奋剂控制中区分内源性和合成睾酮(T)。到目前为止,还没有使用液相色谱(LC-IRMS)。LC-IRMS 仪器不允许在流动相中使用有机溶剂或改性剂进行 δC 测定。 中等到非极性分析物(如类固醇)可以在加热到高温(HT,高达 200°C)的水中进行分析,因为在 200°C 时的极性与环境温度下 80/20 甲醇/水相似。在这项工作中,我们开发了一种尿液中类固醇的方法,将 LC-IRMS 的应用扩展到复杂基质中的非极性分析物。

结果

开发并验证了一种能够测定尿液中四种类固醇(即睾酮(T)、5α-雄烷-3α,17β-二醇(ααβ)、5β-雄烷-3α,17β-二醇(βαβ)和孕三醇(PT))的 δC 值的 HT-LC-IRMS 方法。准确度范围为 0.23 ‰(ααβ 和 βαβ)至 0.49 ‰(T),检测限设定为 10ng mL(T、ααβ+βαβ)。验证数据和使用 HT-LC-IRMS 和 GC-C-IRMS 分析的真实尿液样品的比较表明,HT-LC-IRMS 和 GC-C-IRMS 之间具有相当的性能。

意义

HT-LC-IRMS 可用于测定合成代谢类固醇的 δC 值,将 HT-LC 和 LC-IRMS 的适用性扩展到常规实验室实践中复杂基质中测定的非极性物质。

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