4.7 Article

High-throughput simultaneous analysis of buprenorphine, methadone, cocaine, opiates, nicotine, and metabolites in oral fluid by liquid chromatography tandem mass spectrometry

Journal

ANALYTICAL AND BIOANALYTICAL CHEMISTRY
Volume 398, Issue 2, Pages 915-924

Publisher

SPRINGER HEIDELBERG
DOI: 10.1007/s00216-010-3903-5

Keywords

Oral fluid; Liquid chromatography tandem mass spectrometry; Buprenorphine; Bioanalytical methods; Forensics/toxicology

Funding

  1. National Institutes of Health, National Institute on Drug Abuse

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A method for simultaneous determination of buprenorphine (BUP), norbuprenorphine (NBUP), methadone, 2-ethylidene-1,5-dimethyl-3,3-diphenylpyrrolidine (EDDP), cocaine, benzoylecgonine (BE), ecgonine methyl ester (EME), anhydroecgonine methyl ester (AEME), morphine, codeine, 6-acetylmorphine (6AM), heroin, 6-acetylcodeine (6AC), nicotine, cotinine, and trans-3'-hydroxycotinine (OH-cotinine) by liquid chromatography tandem mass spectrometry in oral fluid (OF) was developed and extensively validated. Acetonitrile (800 mu L) and OF (250 mu L) were added to a 96-well Isolute-PPT+protein precipitation plate. Reverse-phase separation was achieved in 16 min and quantification was performed by multiple reaction monitoring. The assay was linear from 0.5 or 1 to 500 mu g/L. Intraday, interday, and total imprecision were less than 13% (n = 20), analytical recovery was 92-114% (n = 20), extraction efficiencies were more than 77% (n = 5), and process efficiencies were more than 45% (n = 5). Although ion suppression was detected for EME, cocaine, morphine, 6AC, and heroin (less than 56%) and enhancement was detected for BE and nicotine (less than 316%), deuterated internal standards compensated for these effects. The method was sensitive (limit of detection 0.2-0.8 mu g/L) and specific (no interferences) except that 3-hydroxy-4-methoxyamphetamine interfered with AEME. No carryover was detected, and all analytes were stable for 24 h at 22 A degrees C, for 72 h at 4 A degrees C, and after three freeze-thaw cycles, except cocaine, 6AC, and heroin (22-97% loss). The method was applied to 41 OF specimens collected throughout pregnancy with a SalivetteA (R) OF collection device from an opioid-dependent BUP-maintained pregnant woman. BUP ranged from 0 to 7,400 mu g/L, NBUP from 0 to 71 mu g/L, methadone from 0 to 3 mu g/L, nicotine from 32 to 5,020 mu g/L, cotinine from 125 to 508 mu g/L, OH-cotinine from 11 to 51 mu g/L, cocaine from 0 to 419 mu g/L, BE from 0 to 351 mu g/L, EME from 0 to 286 mu g/L, AEME from 0 to 7 mu g/L, morphine from 0 to 22 mu g/L, codeine from 0 to 1 mu g/L, 6AM from 0 to 4 mu g/L, and heroin from 0 to 2 mu g/L. All specimens tested negative for EDDP and 6AC. This method permits a fast and simultaneous quantification of 16 drugs and metabolites in OF, with good selectivity and sensitivity.

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