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Spatial distribution of trace element Ca-normalized ratios in primary and permanent human tooth enamel

机译:初级和永久性人类牙釉质中微量元素钙归一化比的空间分布

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摘要

The trace elements distribution embedded in tooth enamel offers a means to study exposure of toxic metals and allows the reconstruction of dietary behaviors. The quantification of most of the elements with a spatial high resolution (-50 μm) is routinely achieved using laser ablation inductively coupled plasma mass spectrometry (LA-ICPMS). However, the lack of a comprehensive framework of trace elements distribution in enamel jeopardizes any endorsed sampling strategy using LA-ICPMS. The present work is an effort to improve our knowledge on this issue. We studied a suite of 22 sectioned teeth with known dietary history, including 12 3rd molars from 12 living individuals and 10 primary teeth from 3 living individuals. Using LA-ICPMS, we measured Ca, Cu, Zn, Ni, Sr, Ba and Pb variations along 2 or 3 rasters from cervical to occlusal enamel. Calcium concentrations are lower in primary than in permanent teeth and do not vary spatially within a tooth suggesting that enamel matures homogeneously before eruption. The Pb/Ca ratio does not vary within tooth enamel and between primary and permanent tooth enamel. The Cu/Ca and Ni/Ca ratios do not vary within tooth enamel but discriminate primary from permanent tooth enamel. The Zn/Ca ratios are higher in permanent than in primary tooth enamel, and increase up to an order of magnitude in the last hundred of microns at the enamel surface. The Sr/Ca and Ba/ Ca ratios are higher in permanent than in primary tooth enamel, and decrease from the enamel-dentine junction towards outer enamel in permanent but not in primary tooth enamel. Considering the Ca-normalized intra-tooth variations of Zn, Sr and Ba, we recommend to perform laser ablation rasters along the enamel-dentine junction because this area is likely to retain most of the original and complete chemical information related to individual's life.
机译:嵌入牙釉质中的微量元素分布为研究有毒金属的暴露提供了一种手段,并可以恢复饮食行为。通常使用激光烧蚀电感耦合等离子体质谱法(LA-ICPMS)对具有空间高分辨率(-50μm)的大多数元素进行量化。但是,牙釉质中缺乏微量元素分布的全面框架会损害使用LA-ICPMS认可的采样策略。当前的工作是努力提高我们对此问题的认识。我们研究了一组饮食历史已知的22颗切开的牙齿,包括来自12个有生命个体的12颗第三磨牙和来自3个有生命个体的10颗乳牙。使用LA-ICPMS,我们测量了从宫颈到牙釉质沿2或3个栅格的Ca,Cu,Zn,Ni,Sr,Ba和Pb的变化。钙的浓度在乳牙中比在恒牙中要低,并且在牙齿内在空间上没有变化,这表明牙釉质在喷发前均匀成熟。牙釉质内以及初级和永久牙釉质之间的Pb / Ca比值均不变。牙釉质中的Cu / Ca和Ni / Ca比值没有变化,但可以将主要牙釉质与永久性牙釉质区分开。永久性锌/钙比在乳牙珐琅质中更高,并且在珐琅质表面的最后一个一百微米中增加到一个数量级。永久性牙釉质中的Sr / Ca和Ba / Ca比值比普通牙釉质中的高,在永久性牙釉质中,从牙釉质-牙本质交界处到外牙釉质的比例降低,而永久性牙釉质中的Sr / Ca和Ba / Ca比值降低。考虑到Zn,Sr和Ba的Ca归一化的齿内变化,我们建议沿牙釉质-牙本质交界处进行激光烧蚀栅格,因为该区域很可能保留了与个人生活有关的大部分原始和完整的化学信息。

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  • 来源
    《The Science of the Total Environment》 |2017年第15期|308-318|共11页
  • 作者单位

    Laboratoire de Geologie de Lyon, UMR 5276 CNRS, Ecole Normale Superieure de Lyon, 46, Allte d'Italie, 69364 Lyon Cedex 07, France;

    Laboratory of Archaeobotany and Palaeoecology, Faculty of Science, University of South Bohemia, Na Zlate stoce 3,370 05 Ceske Budejovice, Czech Republic;

    Department of Anthropology and Human Genetics, Faculty of Sciences, Charles University, Vinicna 7,128 43 Prague, Czech Republic;

    Laboratoire de Geologie de Lyon, UMR 5276 CNRS, Ecole Normale Superieure de Lyon, 46, Allte d'Italie, 69364 Lyon Cedex 07, France;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Tooth enamel; Laser ablation; Strontium; Barium; Transition metals;

    机译:牙釉质;激光烧蚀;锶;钡;过渡金属;

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