Testing Human Hair for Drugs of Abuse. III. Identification of Heroin and 6-Acetylmorphine as Indicators of Heroin Use
Bruce A. Goldberger, Yale H. Caplan, Terry Maguire, Edward J. Cone
Abstract
Bruce A. Goldberger, Yale H. Caplan, Terry Maguire, Edward J. Cone
Abstract
Hair samples from 20 documented heroin users contained 6-acetylmorphine, a unique metabolite of heroin, in all samples. Heroin was identified in smaller amounts in seven of these samples. The identity of 6-acetylmorphine and heroin was established by comparison of full scan spectra of extracts to standard reference materials. The presence of 6-acetylmorphine generally predominated over heroin, morphine, and codeine. The mean concentrations of analytes were as follows: 6-acetylmorphine, 0.90 ng/mg, N = 20; heroin, 0.17 ng/mg, N = 7; morphine, 0.26 ng/mg, N = 20; codeine, 0.18 ng/mg, N = 15. Analysis of hair samples obtained from 10 drug-free control subjects were negative for 6-acetylmorphine, morphine, and codeine. However, a small interfering peak was observed at the retention time for heroin. Control samples soaked in aqueous solutions of heroin and 6-acetylmorphine were found to be contaminated, even though an initial wash step was included in the analysis. These data suggest that hair analysis for 6-acetylmorphine can be used to differentiate heroin users from other types of opiate exposure (e.g., poppy seed, licit morphine, and codeine); however, environmental contamination can potentially produce false positives during opiate testing.
OpenAlex reports 142 citations for this work. Citation counts describe recorded attention and do not establish research quality.
A contribution statement is not available in the OpenAlex record.
Method details are not available in the OpenAlex metadata.
Findings are not separately available in the OpenAlex metadata.
Limitations are not available in the OpenAlex metadata.
Application details are not available in the OpenAlex metadata.
Hair samples from 20 documented heroin users contained 6-acetylmorphine, a unique metabolite of heroin, in all samples. Heroin was identified in smaller amounts in seven of these samples. The identity of 6-acetylmorphine and heroin was established by comparison of full scan spectra of extracts to standard reference materials. The presence of 6-acetylmorphine generally predominated over heroin, morphine, and codeine. The mean concentrations of analytes were as follows: 6-acetylmorphine, 0.90 ng/mg, N = 20; heroin, 0.17 ng/mg, N = 7; morphine, 0.26 ng/mg, N = 20; codeine, 0.18 ng/mg, N = 15. Analysis of hair samples obtained from 10 drug-free control subjects were negative for 6-acetylmorphine, morphine, and codeine. However, a small interfering peak was observed at the retention time for heroin. Control samples soaked in aqueous solutions of heroin and 6-acetylmorphine were found to be contaminated, even though an initial wash step was included in the analysis. These data suggest that hair analysis for 6-acetylmorphine can be used to differentiate heroin users from other types of opiate exposure (e.g., poppy seed, licit morphine, and codeine); however, environmental contamination can potentially produce false positives during opiate testing.
Key concepts: Codeine, Heroin, Morphine, Hair analysis, Noscapine, Opiate, Chemistry, Forensic toxicology