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Cheating on forensic hair testing? Detection of potential biomarkers for cosmetically altered hair samples using untargeted hair metabolomics

Eisenbeiss, Lisa; Binz, Tina M; Baumgartner, Markus R; Kraemer, Thomas; Steuer, Andrea Eva (2020). Cheating on forensic hair testing? Detection of potential biomarkers for cosmetically altered hair samples using untargeted hair metabolomics. The Analyst, 145(20):6586-6599.

Abstract

Hair analysis has become an integral part in forensic toxicological laboratories for e.g. assessment of drug or alcohol abstinence. However, hair samples can be manipulated by cosmetic treatments, altering drug concentrations which eventually leads to false negative hair test results. In particular oxidative bleaching of hair samples under alkaline conditions significantly affects incorporated drug concentrations. To date, current techniques to detect cosmetic hair adulterations bear limitations such as the implementation of cut-off values or the requirement of specialized instrumentations. As a new approach, untargeted hair metabolomics analysis was applied to detect altered, endogenous biomolecules that could be used as biomarkers for oxidative cosmetic hair treatments. For this, genuine hair samples were treated in vitro with 9% hydrogen peroxide (H2O2) for 30 minutes. Untreated and treated hair samples were analyzed using liquid-chromatography high-resolution time-of-flight mass spectrometry. In total, 69 metabolites could be identified as significantly altered after hair bleaching. The majority of metabolites decreased after bleaching, yet totally degraded metabolites were most promising as suitable biomarkers. The formation of biomarker ratios of metabolites decreasing and increasing in concentrations improved the discrimination of untreated and treated hair samples. With the results of this study, the high variety of identified biomarkers now offers the possibility to include single biomarkers or biomarker selections into routine screening methods for improved data interpretation of hair test results.

Additional indexing

Item Type:Journal Article, refereed, original work
Communities & Collections:04 Faculty of Medicine > Institute of Legal Medicine
Dewey Decimal Classification:340 Law
610 Medicine & health
510 Mathematics
Scopus Subject Areas:Physical Sciences > Analytical Chemistry
Life Sciences > Biochemistry
Physical Sciences > Environmental Chemistry
Physical Sciences > Spectroscopy
Physical Sciences > Electrochemistry
Uncontrolled Keywords:Analytical Chemistry, Spectroscopy, Electrochemistry, Biochemistry, Environmental Chemistry
Language:English
Date:1 January 2020
Deposited On:03 Sep 2020 11:23
Last Modified:23 Dec 2024 02:39
Publisher:Royal Society of Chemistry
ISSN:0003-2654
OA Status:Hybrid
Publisher DOI:https://doi.org/10.1039/d0an01265c
PubMed ID:32785338
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  • Language: English
  • Licence: Creative Commons: Attribution 3.0 Unported (CC BY 3.0)

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