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Identification and quantification of nicotine biomarkers in human oral fluid from individuals receiving low-dose transdermal nicotine: A preliminary study

  • Eleanor I. Miller
  • , Hye Ryun K. Norris
  • , Douglas E. Rollins
  • , Stephen T. Tiffany
  • , Christine M. Moore
  • , Michael J. Vincent
  • , Alpana Agrawal
  • , Diana G. Wilkins
  • University of Utah
  • Immunalysis Corporation

Research output: Contribution to journalArticlepeer-review

18 Scopus citations

Abstract

The objective of this preliminary study was to identify and quantify potential nicotine (NIC) biomarkers in post-exposure oral fluid samples collected from 10 NIC-abstinent human participants administered 7 mg transdermal NIC using liquid chromatography- tandem mass spectrometry (LC-MS-MS). Oral fluid samples were collected prior to NIC patch application and at 0.5 and 0.75 h after patch removal using the Quantisal™ oral fluid collection device. The validated LC-MS-MS analyte panel included nicotine-N-ββ-D-glucuronide, cotinine-N-oxide, trans-3-hydroxycotinine, norcotinine, trans-nicotine-1′-N-oxide, cotinine (COT), nornicotine, NIC, anatabine, anabasine, and cotinine-N-β-Dglucuronide. Analytes and corresponding deuterated internal standards were extracted by solid-phase extraction. NIC and COT concentrations were quantifiable in oral fluid samples collected from 6 of the 10 participants 0.5 h after patch removal and in oral fluid samples collected from 7 of the 10 participants 0.75 h after patch removal. Based on the mean NIC and COT concentrations in oral fluid and plasma for the participants with both quantifiable NIC and COT at the 0.5 and 0.75 h collection times, the oral fluidplasma ratio was 6.4 for NIC and 3.3 for COT. An ELISA procedure was also validated and successfully applied as a screening tool for these oral fluid samples in conjunction with LC-MS-MS confirmation. An ELISA cut-off concentration of 5.0 ng/mL provided excellent sensitivity for discrimination of COT-positive post-exposure oral fluid samples collected after low-level transdermal NIC exposure and oral fluid samples collected prior to patch application.

Original languageEnglish
Pages (from-to)357-366
Number of pages10
JournalJournal of Analytical Toxicology
Volume34
Issue number7
DOIs
StatePublished - Sep 2010

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