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Method for evaluating ion mobility spectrometers for trace detection of fentanyl and fentanyl-related substances

机译:评估离子迁移光谱仪进行粉迹检测芬太尼和芬太尼相关物质的方法

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Continuing efforts to combat the opioid crisis in the U.S. require technologies that can detect the presence of fentanyl and fentanyl-related substances for multiple applications, including law enforcement and border protection. Ion mobility spectrometry (IMS) technologies have a potential role here, and agencies will require robust methods to evaluate instrument performance for what are very challenging detection requirements. A suite of commercial instruments configured for general drug and/or explosives detection was used to determine baseline performance for detection of fentanyl and 15 fentanyl-related substances to guide the development of a method. Detection of all 16 compounds and reproducibility in reduced mobilities (K-0) of +/- 0.01 cm(2) V-1 s(-1) indicate that product ion formation is the same across instrument platforms, and a strong correlation with molecular weight (R-2 = 0.99) allows for the prediction of reduced mobility for newly encountered fentanyl analogs. Eleven compounds representing those most frequently encountered in seized materials in the U.S. since 2015 were chosen for the proposed evaluation method. Based on the highest resolution instruments, detection windows of +/- 0.003 cm(2) V-1 s(-1) allow for 6 out of 11 compounds to be uniquely identified while the remainder are identified as pairs. The method proposes testing only 9 compounds because of the redundancies represented by the paired detections. Sensitivity measurements using ASTM E2677 for fentanyl and benzyl fentanyl indicate that all instruments are capable of nanogram detection levels, and that a common dosing level of 100 ng for all tested compounds is appropriate. Heroin, procaine, and quinine are proposed as confusants to add to fentanyl samples, based on the known presence of these materials in seized samples and baseline measurements of the effect on the detection of fentanyl. The method also includes a list of drugs that should be tested for false positives to ensure that authentic pharmaceutical compounds or other illicit drugs can be discriminated. IMS manufacturers are currently developing algorithms to enable fentanyl detection in their trace detectors, and this method can apply as those instruments become available.
机译:继续努力打击美国阿片类药物危机。需要能够检测到多苯基和芬太尼相关物质的技术进行多种申请,包括执法和边境保护。离子移动光谱测定法(IMS)技术在此具有潜在的作用,并且机构将需要强大的方法来评估仪器性能,以便为最具挑战性的检测要求。用于一般药物和/或爆炸物检测的一套商业仪器用于确定芬太尼和15个芬太尼相关物质的基线性能,以指导一种方法的发展。检测次数(K-0)的+/- 0.01cm(2)V-1s(-1)的蜕皮(K-0)的所有16种化合物和再现性表明,仪器平台的产物离子形成是相同的,以及与分子的强相关重量(R-2 = 0.99)允许预测新遇到的芬太尼类似物的降低的迁移率。选择在美国缉获材料中最常遇到的十一种化合物。从2015年以来被选为所提出的评价方法。基于最高分辨率的仪器,+/- 0.003cm(2)V-1 S(-1)的检测窗口允许11个化合物中的6个,以唯一地识别,而其余部分被识别为对。该方法提出仅测试9个化合物,因为由配对检测表示的冗余。使用ASTM E2677用于芬太尼和苄基芬太尼的敏感性测量表明所有仪器能够进行纳米图检测水平,并且所有测试化合物的常见剂量为100ng是合适的。提出了海洛因,普鲁卡因和奎宁作为抑郁液,基于这些材料中的已知存在于所获取的样品和基线测量对芬太尼的效果的基线测量。该方法还包括应对误报的药物列表,以确保可以区分真实的药物化合物或其他非法药物。 IMS制造商目前正在开发算法,以使其跟踪探测器中的芬太尼检测,此方法可以应用,因为这些仪器可用。

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