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使用带LiveID确认功能的大气压固相分析探头质谱法进行芬太尼及芬太尼类似物筛查。

Fentanyl and Fentanyl Analog Screening Using ASAP-MS With LiveID Confirmation.

作者信息

Reyes Monroy Karen A, Koerber Rachel, Verbeck Guido F

机构信息

Department of Chemistry, The University of North Texas, Denton, Texas, USA.

出版信息

Rapid Commun Mass Spectrom. 2025 May 15;39(9):e9994. doi: 10.1002/rcm.9994.

DOI:10.1002/rcm.9994
PMID:39873905
Abstract

RATIONALE

Fentanyl and fentanyl analogs continue to pose a serious threat to the public health. The vast number of fentanyl analogs emerging on the black-market call for optimized analytical methods for the detection, analysis, and characterization of these extremely dangerous drugs.

METHODS

Atmospheric pressure solids analysis probe (ASAP) mass spectrometry was used for the rapid analysis of 250 synthetic opioid standards, including 211 fentanyl analogs, 32 non-fentanyl related opioids, and 8 fentanyl precursors. Four cone voltages (5, 15, 35 and 50 V) were used to obtain fingerprint data for each opioid reference sample.

RESULTS

The generated and processed mass spectra of the 250 synthetic opioids analyzed was utilized to create an ASAP database that contains the largest compendium of mass spectra for fentanyl analogs. The built library was integrated into LiveID software, enabling real-time analyte identification. The efficacy of the software's ability to identify fentanyl analogs in a sample utilizing the spectral library was tested by analyzing five blind and four reaction mixtures. The correct identity of these nine samples was all within the top three ranked matches.

CONCLUSION

We demonstrate how the RADIAN ASAP, alongside a real-time sample recognition software, can be utilized as a presumptive tool for the screening of fentanyl analogs within samples in question, making it a promising alternative to some of the most commonly used analytical screening techniques.

摘要

原理

芬太尼及其类似物继续对公众健康构成严重威胁。大量在黑市上出现的芬太尼类似物需要优化的分析方法来检测、分析和鉴定这些极其危险的药物。

方法

采用大气压固体分析探头(ASAP)质谱法对250种合成阿片类标准品进行快速分析,其中包括211种芬太尼类似物、32种非芬太尼相关阿片类药物和8种芬太尼前体。使用四种锥孔电压(5、15、35和50 V)来获取每种阿片类参考样品的指纹数据。

结果

对所分析的250种合成阿片类药物生成并处理后的质谱图被用于创建一个ASAP数据库,该数据库包含了最大的芬太尼类似物质谱汇编。所构建的库被集成到LiveID软件中,实现实时分析物识别。通过分析五个未知样品和四个反应混合物,测试了该软件利用光谱库识别样品中芬太尼类似物的能力的有效性。这九个样品的正确识别结果均在前三个匹配排名之内。

结论

我们展示了RADIAN ASAP与实时样品识别软件如何可作为一种推定工具,用于筛查相关样品中的芬太尼类似物,使其成为一些最常用分析筛查技术的有前景的替代方法。

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