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首页> 外文期刊>Analytical chemistry >Establishment of an extraction method for the recovery of tattoo pigments from human skin using HPLC diode array detector technology
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Establishment of an extraction method for the recovery of tattoo pigments from human skin using HPLC diode array detector technology

机译:建立高效液相色谱二极管阵列检测器技术从人皮肤中回收纹身色素的提取方法

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摘要

Tattooing is a widespread process of puncturing pigments into skin, whereas the resulting concentration inside the skin remains unknown. Many tattoo colorants are organic pigments, such as azo pigments, manufactured for other uses. To remove tattoos from skin, laser pulses at very high intensities are applied to the skin to destroy the tattoo pigments. Recent investigations have shown that several azo compounds are cleaved by laser light leading to potentially toxic or carcinogenic compounds. To assess the risk of tattooing and laser treatment of tattoos, the concentration of the pigments and their decomposition products in the skin must be determined. Therefore, an extraction method was established to determine the concentration of tattoo pigments and decomposition products quantitatively. The extraction of two widely used azo compounds, Pigment Red 22 and Pigment Red 9, and their laser-induced decomposition products, 2-methyl-5-nitroaniline, 4-nitrotoluene, 2,5-dichloraniline, and 1,4-dichlorobenzene, was accomplished using recovery experiments and HPLC-DAD technology. Despite the poor solubility of the pigments, a nearly complete recovery from aqueous suspension (> 92%) or lysed skin (> 94%) was achieved. The decomposition products were extracted from aqueous suspension or skin showing a recovery of up to 100%, except for the very volatile 1,4-DCB.
机译:纹身是将色素刺入皮肤的广泛过程,而在皮肤内部产生的浓度仍然未知。许多纹身色料是有机颜料,例如偶氮颜料,可用于其他用途。为了从皮肤上去除纹身,将非常高强度的激光脉冲施加到皮肤上以破坏纹身颜料。最近的研究表明,几种偶氮化合物会被激光裂解,从而导致潜在的有毒或致癌的化合物。为了评估纹身的风险和纹身的激光处理,必须确定皮肤中色素及其分解产物的浓度。因此,建立了一种提取方法来定量测定纹身颜料和分解产物的浓度。提取两种广泛使用的偶氮化合物颜料红22和颜料红9,及其激光诱导的分解产物2-甲基-5-硝基苯胺,4-硝基甲苯,2,5-二氯苯胺和1,4-二氯苯,使用回收率实验和HPLC-DAD技术完成。尽管颜料的溶解度很差,但仍可以从水性悬浮液(> 92%)或溶解的皮肤(> 94%)中几乎完全恢复。从水悬浮液或皮肤中提取分解产物,除挥发性极高的1,4-DCB外,回收率高达100%。

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