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首页> 外文期刊>Journal of Analytical Toxicology >Ultrafast Screening of Synthetic Cannabinoids and Synthetic Cathinones in Urine by RapidFire-Tandem Mass Spectrometry
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Ultrafast Screening of Synthetic Cannabinoids and Synthetic Cathinones in Urine by RapidFire-Tandem Mass Spectrometry

机译:通过RapidFire串联质谱法超快筛选尿液中的合成大麻素和合成卡西酮

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摘要

Screening for emerging drugs of abuse, specifically synthetic cathinones and synthetic cannabinoids, is difficult for high-throughput laboratories as immunoassay kits are often unavailable. Consequently, most laboratories employ liquid chromatography-tandem mass spectrometry (LC-MS-MS) screening, which can be complex and time consuming as these techniques may require involved sample preparation and lengthy analysis times. The increasing demand for novel psychoactive substance testing necessitates alternative screening methods that are sensitive, fast and versatile. The RapidFire tandem mass spectrometry system (RF-MS-MS) provides a rapid and highly specific screen for these emerging drugs of abuse with minimal sample preparation and an instrumental analysis time of <14 s per sample. Presented here are two RF-MS-MS screening methods used to analyze 28 emerging drugs of abuse, 14 synthetic cannabinoids and 14 synthetic cathinones, in urine with run times of 9 and 12.6 s, respectively. Sample preparation and hydrolysis were performed in a 96-well plate with one multiple reaction monitoring transition used for the identification of each compound. Eighteen thousand urine specimens were screened by liquid-liquid extraction followed by LC-MS-MS analysis, and the results were compared with those obtained using the RF-MS-MS screening method. The analytical data illustrate the advantages of the RF-MS-MS methods.
机译:高通量实验室很难筛查新兴滥用药物,特别是合成的卡西酮和合成的大麻素,因为通常无法获得免疫测定试剂盒。因此,大多数实验室采用液相色谱-串联质谱(LC-MS-MS)筛查,这可能很复杂且耗时,因为这些技术可能需要样品制备和较长的分析时间。对新型精神活性物质检测的需求不断增长,因此需要灵敏,快速且通用的替代筛查方法。 RapidFire串联质谱系统(RF-MS-MS)提供了针对这些新兴滥用药物的快速且高度特异性的筛查方法,只需最少的样品制备,每个样品的仪器分析时间少于14 s。本文介绍了两种RF-MS-MS筛选方法,分别用于分析尿液中的28种新兴滥用药物,14种合成大麻素和14种合成卡西酮,运行时间分别为9和12.6 s。样品制备和水解在96孔板上进行,其中一个多反应监测过渡用于鉴定每种化合物。通过液-液萃取,然后进行LC-MS-MS分析,筛选了1.8万个尿液样本,并将结果与​​使用RF-MS-MS筛选方法获得的结果进行了比较。分析数据说明了RF-MS-MS方法的优势。

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