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使用配备有解吸电喷雾电离的便携式质谱仪对合成卡西酮进行痕量残留和真实缴获的快速筛选。

Rapid screening of synthetic cathinones as trace residues and in authentic seizures using a portable mass spectrometer equipped with desorption electrospray ionization.

机构信息

Department of Chemistry, Illinois State University, Normal, IL 61790-4160, USA.

出版信息

Rapid Commun Mass Spectrom. 2012 Dec 15;26(23):2665-72. doi: 10.1002/rcm.6390.

DOI:10.1002/rcm.6390
PMID:23124656
Abstract

RATIONALE

Recently, the surge in synthetic cathinone abuse has become a matter of public concern. With the influx of confiscated synthetic cathinones dramatically on the rise, laboratory workloads are expected to increase at a similar rate. This prompts the need for rapid analytical methods capable of detecting and identifying such compounds.

METHODS

A ruggedized, portable ion trap mass spectrometer capable of desorption electrospray ionization mass spectrometry (DESI-MS) was used to rapidly characterize various synthetic cathinones. Target analytes were directly analyzed as trace residues on various substrates and as major components in authentic, powder-based forensic evidence. Physical transfer swabs can also be examined with this method, allowing efficient screening of large areas and geometrically complex samples.

RESULTS

Method validity was tested on trace residues, mock forensic samples, and authentic evidentiary seizures, yielding low- to sub-ng detection limits from several substrates of interest to crime scene investigation. Analyte confirmation was accomplished through MS(2) analysis, providing characteristic fragmentation similar to that reported in literature. High-throughput analysis was demonstrated with no significant instrumental carryover, even for powdered samples. The robustness of this DESI-MS method to multi-component samples was examined, marked by high chemical specificity.

CONCLUSIONS

Coupling DESI-MS with portable instrumentation allowed sensitive and selective examination of synthetic cathinones from various substrates, in complex mixtures, and directly from mock and authentic forensic evidence. This instrumental method has the potential to assess the evidentiary value of forensic samples at crime scenes, reducing backlogs and expediting criminal investigations.

摘要

原理

最近,合成卡西酮的滥用急剧增加,引起了公众关注。随着没收的合成卡西酮数量的大幅增加,预计实验室工作量将以类似的速度增加。这促使我们需要开发快速的分析方法,以检测和识别这些化合物。

方法

我们使用一种坚固耐用的便携式离子阱质谱仪,该质谱仪能够进行解吸电喷雾电离质谱(DESI-MS)分析,以快速表征各种合成卡西酮。目标分析物可以直接作为各种基质上的痕量残留物进行分析,也可以作为真实的、基于粉末的法医证据中的主要成分进行分析。该方法还可以检查物理转移拭子,从而能够有效地筛选大面积和几何形状复杂的样品。

结果

在痕量残留物、模拟法医样品和真实证据缉获物上测试了方法的有效性,从几个犯罪现场调查感兴趣的基质中获得了低至亚纳克的检测限。通过 MS(2) 分析完成了分析物的确认,提供了与文献报道相似的特征碎片。即使对于粉末样品,也实现了高通量分析,且没有明显的仪器残留。该 DESI-MS 方法对多组分样品的稳健性进行了检验,具有很高的化学特异性。

结论

将 DESI-MS 与便携式仪器相结合,能够从各种基质、复杂混合物中,以及直接从模拟和真实法医证据中,对合成卡西酮进行灵敏和选择性的检测。这种仪器方法有可能在犯罪现场评估法医样本的证据价值,减少积压并加快刑事调查。

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