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首页> 外文期刊>European journal of mass spectrometry >Identification of fentanyl, alfentanil, sufentanil, remifentanil and their major metabolites in human urine by liquid chromatography/tandem mass spectrometry for doping control purposes
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Identification of fentanyl, alfentanil, sufentanil, remifentanil and their major metabolites in human urine by liquid chromatography/tandem mass spectrometry for doping control purposes

机译:液相色谱/串联质谱法检测人尿中的芬太尼,阿芬太尼,舒芬太尼,瑞芬太尼及其主要代谢物以控制掺杂

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摘要

Since January 2005, the list of prohibited substances established by the World Anti-Doping Agency prohibits the opioid agent fentanyl as well as its related drugs in professional and amateur sports. Fast, reliable and robust analytical assays are required that allow the sensitive determination of these compounds or respective metabolites in human urine and liquid chromatography interfaced to mass spectrometry has proven to be a suitable and powerful tool for drug testing for several years. A screening and confirmation method was developed that enables the identification of fentanyl, alfentanil, remifentanil and sufentanil as well as their N-dealkylated or de-esterified metabolites utilizing solid-phase extraction of a 2mL urine aliquot followed by LC-electrospray-MS/MS analysis. The procedure was validated in terms of recovery (95.8-104.9%), lower limit of detection (0.5 ng mL(-1)), specificity and interday precision (3.9-19.8%) for the four opioid drugs and the metabolic product norfentanyl. In addition, the mass spectrometric behavior of fentanyl after electrospray ionization and collision-induced dissociation was studied by synthesis and analysis of structurally related compounds and dissociation pathways were proposed allowing the characterization of target analytes and corresponding metabolites.
机译:自2005年1月起,世界反兴奋剂机构制定的禁用物质清单禁止在专业和业余运动中使用阿片类药物芬太尼及其相关药物。需要快速,可靠和强大的分析测定法,以便能够灵敏地测定人尿液中的这些化合物或相应的代谢物,并且与质谱联用的液相色谱法已被证明是多年来进行药物测试的合适且功能强大的工具。开发了一种筛选和确认方法,该方法能够通过固相萃取2 mL尿液等分试样,然后进行LC-电喷雾MS / MS鉴定芬太尼,阿芬太尼,瑞芬太尼和舒芬太尼及其N-脱烷基或去酯化的代谢物分析。该方法在四种阿片类药物和代谢产物降芬太尼的回收率(95.8-104.9%),检测下限(0.5 ng mL(-1)),特异性和日间精密度(3.9-19.8%)方面得到验证。此外,通过合成和分析与结构相关的化合物,研究了电喷雾电离和碰撞诱导的离解后芬太尼的质谱行为,并提出了离解途径,可表征目标分析物和相应的代谢物。

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