Domanico Francesco, Forte Giovanni, Majorani Costanza, Senofonte Oreste, Petrucci Francesco, Pezzi Vincenzo, Alimonti Alessandro
University of Calabria, Arcavacata di Rende (CS), Italy.
Italian National Institute for Health, Rome, Italy.
J Trace Elem Med Biol. 2017 Sep;43:3-8. doi: 10.1016/j.jtemb.2016.09.008. Epub 2016 Sep 29.
Mercury is a heavy metal that causes serious health problems in exposed subjects. The most toxic form, i.e., methylmercury (MeHg), is mostly excreted through human hair. Numerous analytical methods are available for total Hg analysis in human hair, including cold vapour atomic fluorescence spectrometry (CV-AFS), inductively coupled plasma mass spectrometry (ICP-MS) and thermal decomposition amalgamation atomic absorption spectrometry (TDA-AAS). The aim of the study was to compare the TDA-AAS with the ICP-MS in the Hg quantification in human hair. After the washing procedure to minimize the external contamination, from each hair sample two aliquots were taken; the first was used for direct analysis of Hg by TDA-AAS and the second was digested for Hg determination by the ICP-MS. Results indicated that the two data sets were fully comparable (median; TDA-AAS, 475ngg; ICP-MS, 437ngg) and were not statistically different (Mann-Whitney test; p=0.44). The two techniques presented results with a good coefficient of correlation (r=0.94) despite different operative ranges and method limits. Both techniques satisfied internal performance requirements and the parameters for method validation resulting sensitive, precise and reliable. Finally, the use of the TDA-AAS can be considered instead of the ICP-MS in hair analysis in order to reduce sample manipulation with minor risk of contamination, less time consuming due to the absence of the digestion step and cheaper analyses.
汞是一种重金属,会给接触到的人带来严重的健康问题。毒性最强的形式,即甲基汞(MeHg),主要通过人体毛发排出。有许多分析方法可用于分析人发中的总汞,包括冷蒸气原子荧光光谱法(CV-AFS)、电感耦合等离子体质谱法(ICP-MS)和热分解汞齐化原子吸收光谱法(TDA-AAS)。本研究的目的是比较TDA-AAS和ICP-MS在人发汞定量分析中的效果。在进行清洗程序以尽量减少外部污染后,从每个头发样本中取出两份等分试样;第一份用于通过TDA-AAS直接分析汞,第二份进行消解后用ICP-MS测定汞。结果表明,两组数据集具有完全可比性(中位数;TDA-AAS为475ng/g;ICP-MS为437ng/g),且无统计学差异(曼-惠特尼检验;p=0.44)。尽管操作范围和方法限值不同,但这两种技术呈现出良好的相关系数(r=0.94)。两种技术均满足内部性能要求以及方法验证参数,结果灵敏、精确且可靠。最后,在头发分析中可以考虑使用TDA-AAS代替ICP-MS,以减少样品处理过程中的污染风险,由于无需消解步骤而耗时更短,且分析成本更低。