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Determination of 37 fentanyl analogues and novel synthetic opioids in hair by UHPLC-MS/MS and its application to authentic cases

机译:UHPLC-MS / MS测定毛发中37个芬太尼类似物和新型合成阿片类药物及其在真实情况下的应用

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摘要

Abstract The recent emergence of new fentanyl analogues and synthetic opioids on the drug market poses a global public health threat. However, these compounds cannot typically be identified using existing analytical methods. In this study, we aimed to develop and validate a rapid and sensitive method based on ultra-high-performance liquid chromatography–tandem mass spectrometry (UHPLC-MS/MS) for the simultaneous determination of 37 fentanyl analogues and novel synthetic opioids in hair samples. Hair samples (20 mg) were extracted by cryogenic grinding in an extraction medium of methanol, acetonitrile, and 2 mmol/L ammonium acetate (pH 5.3). Following centrifugation of the samples, the analytes were separated using a WATERS Acquity UPLC HSS T3 column. The limits of detection (LODs) and limits of quantification (LOQs) ranged from 0.5 to 2.5 pg/mg and from 2 to 5 pg/mg, respectively. The intraday and interday precisions were within 13.32% at LOQ, low, medium, and high levels. The accuracies were within the range of 85.63–116.1%. The extraction recoveries were in the range of 89.42–119.68%, and the matrix effects were within the range of 44.81–119.77%. Furthermore, the method was successfully applied to the detection and quantification of fentanyl and sufentanil in hair samples from two authentic cases. Thus, this method has great potential for detecting fentanyl analogues and novel synthetic opioids in forensic work.
机译:摘要近期新芬太尼类似物的出现和药物市场上的合成阿片类药物构成了全球公共卫生威胁。然而,这些化合物通常不能使用现有的分析方法鉴定。在这项研究中,我们旨在基于超高效液相色谱 - 串联质谱(UHPLC-MS / MS)进行快速和敏感的方法,用于同时测定37个芬太尼类似物和新型发酵素样品中的新型合成阿片类药物。通过在甲醇,乙腈和2mmol / L乙酸铵(pH5.3)的萃取介质中,通过低温研磨萃取头发样品(20mg)。在对样品离心后,使用水分检测分析分析物进行分离。检测限(LOD)和定量限制(LOQs)分别为0.5至2.5pg / mg和2至5pg / mg。在LOQ,低,培养基和高水平的情况下,盘中和白天的精确度在13.32%以内。准确度在85.63-116.1%的范围内。提取回收率在89.42-119.68%的范围内,基质效应在44.81-119.77%的范围内。此外,该方法已成功应用于来自两个真实情况的芬太尼和苏芬太尼的检测和定量。因此,该方法具有检测芬太尼类似物和新型合成阿片类药物在法医工作中的潜力。

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