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首页> 外文期刊>Analytical and bioanalytical chemistry >Application of laser ablation–inductively coupled plasma-mass spectrometry (LA–ICP–MS) to investigate trace metal spatial distributions in human tooth enamel and dentine growth layers and pulp
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Application of laser ablation–inductively coupled plasma-mass spectrometry (LA–ICP–MS) to investigate trace metal spatial distributions in human tooth enamel and dentine growth layers and pulp

机译:激光烧蚀-电感耦合等离子体质谱法(LA-ICP-MS)在人类牙釉质,牙本质生长层和牙髓中研究痕量金属空间分布

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摘要

Human tooth enamel provides a nearly permanent and chronological record of an individuals nutritional status and anthropogenic trace metal exposure during development; it might thus provide an excellent bio archive. We investigated the micro-spatial distribution of trace metals (Cu, Fe, Mg, Sr, Pb, and Zn) in 196 * 339 μm~2 raster pattern areas (6.6 * 104 μm~2) in a deciduous tooth using laser ablation-inductively coupled plasma-mass spectrometry (LA–ICP–MS). Ablated areas include prenatal and postnatal enamel, the neonatal line, the dentine–enamel junction (DEJ), dentine, and the dentine–pulp junction. Topographic variations in the surface elemental distribution of lead, zinc, strontium, and iron intensities in a deciduous tooth revealed heterogeneous distribution within and among regions. ~(43)Ca normalized elemental intensities showed the following order: Sr>MgZn>Pb>Fe>Cu. Elevated zinc and lead levels were present in the dental pulp region and at the neonatal line. This study demonstrates the ability of LA–ICP–MS to provide unique elemental distribution information in micro spatial areas of dental hard tissues. Elemental distribution plots could be useful in decoding nutrition and pollution information embedded in their bio apatite structure.
机译:人牙釉质提供了发育过程中个体的营养状况和人为微量金属暴露的近乎永久性和按时间顺序的记录;因此,它可能会提供出色的生物档案。我们使用激光烧蚀技术研究了乳牙中196 * 339μm〜2光栅图案区域(6.6 * 104μm〜2)中微量金属(Cu,Fe,Mg,Sr,Pb和Zn)的微空间分布-电感耦合等离子体质谱法(LA–ICP–MS)。消融区域包括产前和产后牙釉质,新生儿线,牙本质-牙釉质交界处(DEJ),牙本质和牙本质-牙髓交界处。乳齿中铅,锌,锶和铁强度的表面元素分布的形貌变化揭示了区域内和区域间的异质分布。 〜(43)Ca归一化元素强度显示以下顺序:Sr> Mg Zn> Pb> Fe> Cu。牙髓区域和新生儿线中锌和铅的含量升高。这项研究证明了LA-ICP-MS在牙齿硬组织的微小空间区域提供独特的元素分布信息的能力。元素分布图可用于解码嵌入其生物磷灰石结构中的营养和污染信息。

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