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基于同步加速器的 ν-XRF 成像和 μ-FTIR 显微镜可用于观察纹身颜料在人体皮肤中的命运和影响。

Synchrotron-based ν-XRF mapping and μ-FTIR microscopy enable to look into the fate and effects of tattoo pigments in human skin.

机构信息

German Federal Institute for Risk Assessment (BfR), Department of Chemical and Product Safety, Max-Dohrn-Strasse 8-10, 10589, Berlin, Germany.

European Synchrotron Radiation Facility (ESRF), 38043, Grenoble, Cedex 9, France.

出版信息

Sci Rep. 2017 Sep 12;7(1):11395. doi: 10.1038/s41598-017-11721-z.

Abstract

The increasing prevalence of tattoos provoked safety concerns with respect to particle distribution and effects inside the human body. We used skin and lymphatic tissues from human corpses to address local biokinetics by means of synchrotron X-ray fluorescence (XRF) techniques at both the micro (μ) and nano (ν) scale. Additional advanced mass spectrometry-based methodology enabled to demonstrate simultaneous transport of organic pigments, heavy metals and titanium dioxide from skin to regional lymph nodes. Among these compounds, organic pigments displayed the broadest size range with smallest species preferentially reaching the lymph nodes. Using synchrotron μ-FTIR analysis we were also able to detect ultrastructural changes of the tissue adjacent to tattoo particles through altered amide I α-helix to β-sheet protein ratios and elevated lipid contents. Altogether we report strong evidence for both migration and long-term deposition of toxic elements and tattoo pigments as well as for conformational alterations of biomolecules that likely contribute to cutaneous inflammation and other adversities upon tattooing.

摘要

纹身的流行引发了人们对粒子分布和在人体内部影响的安全担忧。我们使用人体皮肤和淋巴组织,通过同步加速器 X 射线荧光(XRF)技术在微观(μ)和纳米(ν)尺度上研究局部生物动力学。此外,还采用了基于先进质谱的方法,证明了有机颜料、重金属和二氧化钛从皮肤到区域淋巴结的同时传输。在这些化合物中,有机颜料显示出最宽的尺寸范围,最小的物质优先到达淋巴结。使用同步加速器 μ-FTIR 分析,我们还能够通过改变酰胺 I α-螺旋到β-折叠的蛋白比例和升高的脂质含量,检测到紧邻纹身颗粒的组织的超微结构变化。总的来说,我们有强有力的证据表明有毒元素和纹身颜料的迁移和长期沉积,以及生物分子构象的改变,这可能导致纹身时的皮肤炎症和其他不良反应。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f0aa/5595966/05c89e5d0c21/41598_2017_11721_Fig1_HTML.jpg

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