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使用全集成气相色谱-傅里叶变换红外和质谱检测法(GC-FT-IR-MS)进行法医毒品鉴定、确证和定量。

Forensic Drug Identification, Confirmation, and Quantification Using Fully Integrated Gas Chromatography with Fourier Transform Infrared and Mass Spectrometric Detection (GC-FT-IR-MS).

机构信息

U.S. Food and Drug Administration, Forensic Chemistry Center, Cincinnati, OH, USA.

出版信息

Appl Spectrosc. 2018 May;72(5):750-756. doi: 10.1177/0003702817746964. Epub 2018 Jan 9.

DOI:10.1177/0003702817746964
PMID:29154671
Abstract

This manuscript is a continuation of a recent study that described the use of fully integrated gas chromatography with direct deposition Fourier transform infrared detection and mass spectrometric detection (GC-FT-IR-MS) to identify and confirm the presence of sibutramine and AB-FUBINACA. The purpose of the current study was to employ the GC-FT-IR portion of the same instrument to quantify these compounds, thereby demonstrating the ability to identify, confirm, and quantify drug substances using a single GC-FT-IR-MS unit. The performance of the instrument was evaluated by comparing quantitative analytical figures of merit to those measured using an established, widely employed method for quantifying drug substances, high performance liquid chromatography with ultraviolet detection (HPLC-UV). The results demonstrated that GC-FT-IR was outperformed by HPLC-UV with regard to sensitivity, precision, and linear dynamic range (LDR). However, sibutramine and AB-FUBINACA concentrations measured using GC-FT-IR were not significantly different at the 95% confidence interval compared to those measured using HPLC-UV, which demonstrates promise for using GC-FT-IR as a semi-quantitative tool at the very least. The most significant advantage of GC-FT-IR compared to HPLC-UV is selectivity; a higher level of confidence regarding the identity of the analyte being quantified is achieved using GC-FT-IR. Additional advantages of using a single GC-FT-IR-MS instrument for identification, confirmation, and quantification are efficiency, increased sample throughput, decreased consumption of laboratory resources (solvents, chemicals, consumables, etc.), and thus cost.

摘要

本文是对最近一项研究的延续,该研究描述了使用完全集成的气相色谱法与直接沉积傅里叶变换红外检测和质谱检测(GC-FT-IR-MS)来识别和确认舒马曲坦和 AB-FUBINACA 的存在。本研究的目的是利用相同仪器的 GC-FT-IR 部分来定量这些化合物,从而证明使用单个 GC-FT-IR-MS 单元即可进行识别、确认和定量药物的能力。通过将定量分析的性能指标与使用广泛使用的定量药物物质的既定方法(高效液相色谱法与紫外检测(HPLC-UV))测量的性能指标进行比较,评估了仪器的性能。结果表明,GC-FT-IR 在灵敏度、精密度和线性动态范围(LDR)方面逊于 HPLC-UV。然而,使用 GC-FT-IR 测量的舒马曲坦和 AB-FUBINACA 浓度在 95%置信区间内与使用 HPLC-UV 测量的浓度没有显著差异,这表明至少可以将 GC-FT-IR 用作半定量工具。与 HPLC-UV 相比,GC-FT-IR 的最大优势在于选择性;使用 GC-FT-IR 可以更有信心地确定被定量分析物的身份。使用单个 GC-FT-IR-MS 仪器进行识别、确认和定量的其他优点包括效率、增加的样品通量、减少实验室资源(溶剂、化学品、消耗品等)的消耗,从而降低成本。

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