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Quantitative analysis of metals and metal-based nano- and submicron-particles in tattoo inks

机译:纹身墨水中金属和金属基纳米和亚微米颗粒的定量分析

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摘要

Exposure to metals and metal-based nano- (NPs, 1-100 nm) and submicron-particles (SPs, 0.1-1 mu m) contained in tattoo inks and related health safety is currently receiving a great deal of interest. Twenty inks of different brands and colours were sampled in Italy in 2019. The SemiQuant Inductively Coupled Plasma Mass Spectrometry (ICP-MS) analysis allowed quantifying the concentration of 18 metals (Al, As, Ba, Cd, Co, Cr, Cu, Fe, Hg, Mn, Mo, Ni, Pb, Sb, Se, Sn, Ti, Zn) in inks. The Single Particle ICP-MS was used to detect the diameters and concentration of NPs and SPs of 9 metals (Al, Co, Cr, Cu, Hg, Ni, Pb, Ti and Zn). Concentration of metals in tattoo inks were below the recommended concentrations reported in the Resolution ResAP (2008)1 indicating ink production have shifted to purer materials and best manufacturing practices. Regarding particles, Al was found at nano- (62-80 nm) and submicron-sizes (105-140 nm). Sizes of Cr, Cu, Pb and Zn were in the intervals 42-62 nm, 44-96 nm, 26-28 nm and 26-59 nm, respectively. Titanium was at submicron-diameters (166-383 nm). In addition, Cr and Ti particles accounted for the 47% and 80% of their total concentration, respectively. Tattooing practice exposed humans to metal-based NPs and SPs and the presence of a combination of particles of different metals and/or their dynamics (e.g., dissolution) may change their bioavailability and toxicity. (C) 2019 Published by Elsevier Ltd.
机译:目前,纹身墨水中所含金属和金属基纳米(NPs,1-100 nm)和亚微米级颗粒(SPs,0.1-1μm)的暴露以及相关的健康安全引起了人们的极大兴趣。 2019年在意大利采样了20种不同品牌和颜色的墨水。SemiQuant电感耦合等离子体质谱(ICP-MS)分析可以定量分析18种金属(Al,As,Ba,Cd,Co,Cr,Cu,Fe的浓度) ,墨水中的Hg,Mn,Mo,Ni,Pb,Sb,Se,Sn,Ti,Zn)。单颗粒ICP-MS用于检测9种金属(Al,Co,Cr,Cu,Hg,Ni,Pb,Ti和Zn)的NP和SP的直径和浓度。纹身墨水中的金属浓度低于ResAP(2008)1号决议中报告的建议浓度,表明墨水生产已转向更纯净的材料和最佳制造实践。关于颗粒,发现Al处于纳米(62-80nm)和亚微米尺寸(105-140nm)。 Cr,Cu,Pb和Zn的大小分别在42-62 nm,44-96 nm,26-28 nm和26-59 nm之间。钛为亚微米直径(166-383 nm)。此外,Cr和Ti颗粒分别占其总浓度的47%和80%。纹身实践使人类暴露于基于金属的NP和SP,并且存在不同金属的颗粒和/或其动力学(例如,溶解)的组合可能会改变其生物利用度和毒性。 (C)2019由Elsevier Ltd.发布

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