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Unambiguous Characterization of Analytical Markers in Complex, Seized Opiate Samples Using an Enhanced Ion Mobility Trace Detector-Mass Spectrometer

机译:使用增强的离子淌度痕量检测器-质谱仪对复杂的缉获的鸦片样品中的分析标记物进行明确的表征

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Ion mobility spectroscopy (IMS)-based trace-compound detectors (TCDs) are powerful and widely implemented tools for the detection of illicit substances. They combine high sensitivity, reproducibility, rapid analysis time, and resistance to dirt with an acceptable false alarm rate. The analytical specificity of TCD-IMS instruments for a given analyte depends strongly on a detailed knowledge of the ion chemistry involved, as well as the ability to translate this knowledge into field-robust analytical methods. In this work, we introduce an enhanced hybrid TCD-IMS/mass spectrometer (TCD-IMS/MS) that combines the strengths of ion-mobility-based target compound detection with unambiguous identification by tandem MS. Building on earlier efforts along these lines (Kozole et al., Anal. Chem. 2011, 83, 8596-8603), the current instrument is capable of positive and negative-mode analyses with tightly controlled gating between the IMS and MS modules and direct measurement of ion mobility profiles. We demonstrate the unique capabilities of this instrument using four samples of opium seized by the Canada Border Services Agency (CBSA), consisting of a mixture of opioid alkaloids and other naturally occurring compounds typically found in these samples. Although many analytical methods have been developed for analyzing naturally occurring opiates, this is the first detailed ion mobility study on seized opium samples. This work demonstrates all available analytical modes for the new IMS-MS system including "single-gate", "dual-gate", MS/MS, and precursor ion scan methods. Using a combination of these modes, we unambiguously identify all signals in the IMS spectra, including previously uncharacterized minor peaks arising from compounds that are common in raw opium.
机译:基于离子迁移谱(IMS)的痕量化合物检测器(TCD)是检测非法物质的功能强大且应用广泛的工具。它们结合了高灵敏度,可重复性,快速分析时间和耐污垢性,并具有可接受的误报率。 TCD-IMS仪器对给定分析物的分析特异性在很大程度上取决于所涉离子化学的详细知识,以及将这些知识转化为可靠的现场分析方法的能力。在这项工作中,我们介绍了一种增强的混合型TCD-IMS /质谱仪(TCD-IMS / MS),它将基于离子淌度的目标化合物检测的优势与通过串联质谱的明确鉴定相结合。基于这些方面的早期努力(Kozole等人,Anal。Chem。2011,83,8596-8603),当前仪器能够通过在IMS和MS模块之间进行严格控制的选通并直接控制正负模式分析离子迁移曲线的测量。我们使用加拿大边境服务局(CBSA)缉获的四个鸦片样品证明了该仪器的独特功能,该样品由阿片生物碱和通常在这些样品中发现的其他天然存在的化合物组成。尽管已经开发出了许多分析方法来分析天然鸦片,但这是对缉获的鸦片样品进行的首次详细的离子迁移率研究。这项工作演示了新IMS-MS系统的所有可用分析模式,包括“单门”,“双门”,MS / MS和前体离子扫描方法。使用这些模式的组合,我们可以清楚地识别IMS光谱中的所有信号,包括以前未表征的,由鸦片中常见的化合物引起的次要峰。

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