Grabenauer Megan, Moore Katherine N, Bynum Nichole D, White Robert M, Mitchell John M, Hayes Eugene D, Flegel Ronald
Center for Forensic Sciences, RTI International, 3040 Cornwallis Rd., Research Triangle Park, NC, USA.
Substance Abuse and Mental Health Services Administration, 5600 Fishers Lane, Rockville, MD, USA.
J Anal Toxicol. 2018 Jul 1;42(6):392-399. doi: 10.1093/jat/bky021.
Recent advances in analytical capabilities allowing for the identification and quantification of drugs and metabolites in small volumes at low concentrations have made oral fluid a viable matrix for drug testing. Oral fluid is an attractive matrix option due to its relative ease of collection, reduced privacy concerns for observed collections and difficulty to adulterate. The work presented here details the development and validation of a liquid chromatography tandem mass spectrometry (LC-MS-MS) method for the quantification of codeine, morphine, 6-acetylmorphine, hydrocodone, hydromorphone, oxycodone and oxymorphone in neat oral fluid. The calibration range is 0.4-150 ng/mL for 6-acetylmorphine and 1.5-350 ng/mL for all other analytes. Within-run and between-run precision were <5% for all analytes except for hydrocodone, which had 6.2 %CV between runs. Matrix effects, while evident, could be controlled using matrix-matched controls and calibrators with deuterated internal standards. The assay was developed in accordance with the proposed mandatory guidelines for opioid confirmation in federally regulated workplace drug testing. The use of neat oral fluid, as opposed to a collection device, enables collection of a single sample that can be split into separate specimens.
分析能力的最新进展使得在低浓度下对小体积中的药物和代谢物进行识别和定量成为可能,这使得口腔液成为药物检测的一种可行基质。由于口腔液相对易于采集、采集过程中隐私问题较少且难以掺假,因此它是一种有吸引力的基质选择。本文介绍的工作详细阐述了一种液相色谱串联质谱(LC-MS-MS)方法的开发和验证,该方法用于定量纯口腔液中的可待因、吗啡、6-乙酰吗啡、氢可酮、氢吗啡酮、羟考酮和羟吗啡酮。6-乙酰吗啡的校准范围为0.4-150 ng/mL,其他所有分析物的校准范围为1.5-350 ng/mL。除氢可酮外,所有分析物的批内和批间精密度均<5%,氢可酮的批间变异系数为6.2%。基质效应虽然明显,但可通过使用基质匹配的对照品和带有氘代内标的校准品来控制。该检测方法是根据联邦监管的工作场所药物检测中阿片类药物确证的拟议强制指南开发的。与采集装置不同,使用纯口腔液能够采集单个样本,该样本可分成单独的标本。