Identification and hazard prediction of tattoo pigments by means of pyrolysis—gas chromatography/mass spectrometry
0301 basic medicine
Tattooing
Health, Toxicology and Mutagenesis
Toxicology
Gas Chromatography-Mass Spectrometry
Hazardous Substances
03 medical and health sciences
Solubility
Predictive Value of Tests
Sunlight
Humans
Ink
Volatilization
Coloring Agents
Analytical Toxicology
DOI:
10.1007/s00204-016-1739-2
Publication Date:
2016-05-23T22:22:07Z
AUTHORS (5)
ABSTRACT
The implementation of regulation for tattoo ink ingredients across Europe has generated the need for analytical methods suitable to identify prohibited compounds. Common challenges of this subject are the poor solubility and the lack of volatility for most pigments and polymers applied in tattoo inks. Here, we present pyrolysis coupled to online gas chromatography and electron impact ionization mass spectrometry (py-GC/MS) as quick and reliable tool for pigment identification using both purified pigments and tattoo ink formulations. Some 36 organic pigments frequently used in tattoo inks were subjected to py-GC/MS with the aim to establish a pyrogram library. To cross-validate pigment identification, 28 commercially available tattoo inks as well as 18 self-made pigment mixtures were analyzed. Pyrograms of inks and mixtures were evaluated by two different means to work out the most reliable and fastest strategy for an otherwise rather time-consuming data review. Using this approach, the declaration of tattoo pigments currently used on the market could be verified. The pyrolysis library presented here is also assumed suitable to predict decomposition patterns of pigments when affected by other degradation scenarios, such as sunlight exposure or laser irradiation. Thus, the consumers' risk associated with the exposure to toxicologically relevant substances that originate from pigment decomposition in the dermal layers of the skin can be assessed. Differentiation between more or less harmful pigments for this field of application now will become feasible.
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