首页> 美国卫生研究院文献>International Journal of Environmental Research and Public Health >Direct Quantification of Rare Earth Elements Concentrations in Urine of Workers Manufacturing Cerium Lanthanum Oxide Ultrafine and Nanoparticles by a Developed and Validated ICP-MS
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Direct Quantification of Rare Earth Elements Concentrations in Urine of Workers Manufacturing Cerium Lanthanum Oxide Ultrafine and Nanoparticles by a Developed and Validated ICP-MS

机译:通过开发和验证的ICP-MS直接定量生产铈氧化镧超细颗粒和纳米颗粒的工人尿液中的稀土元素浓度

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摘要

Rare earth elements (REEs) have undergone a steady spread in several industrial, agriculture and medical applications. With the aim of exploring a sensitive and reliable indicator of estimating exposure level to REEs, a simple, accurate and specific ICP-MS method for simultaneous direct quantification of 15 REEs (89Y, 139La, 140Ce, 141Pr, 146Nd, 147Sm, 153Eu, 157Gd, 159Tb, 163Dy, 165Ho, 166Er, 169Tm, 172Yb and 175Lu) in human urine has been developed and validated. The method showed good linearity for all REEs in human urine in the concentrations ranging from 0.001–1.000 μg∙L−1 with r2 > 0.997. The limits of detection and quantification for this method were in the range of 0.009–0.010 μg∙L−1 and 0.029–0.037 μg∙L−1, the recoveries on spiked samples of the 15 REEs ranged from 93.3% to 103.0% and the relative percentage differences were less than 6.2% in duplicate samples, and the intra- and inter-day variations of the analysis were less than 1.28% and less than 0.85% for all REEs, respectively. The developed method was successfully applied to the determination of 15 REEs in 31 urine samples obtained from the control subjects and the workers engaged in work with manufacturing of ultrafine and nanoparticles containing cerium and lanthanum oxide. The results suggested that only the urinary levels of La (1.234 ± 0.626 μg∙L−1), Ce (1.492 ± 0.995 μg∙L−1), Nd (0.014 ± 0.009 μg∙L−1) and Gd (0.023 ± 0.010 μg∙L−1) among the exposed workers were significantly higher (p < 0.05) than the levels measured in the control subjects. From these, La and Ce were the primary components, and accounted for 88% of the total REEs. Lanthanum comprised 27% of the total REEs while Ce made up the majority of REE content at 61%. The remaining elements only made up 1% each, with the exception of Dy which was not detected. Comparison with the previously published data, the levels of urinary La and Ce in workers and the control subjects show a higher trend than previous reports.
机译:稀土元素(REE)在多种工业,农业和医疗应用中已经稳定发展。为了探索一种敏感且可靠的指标来估算REE的暴露水平,采用一种简单,准确且特异的ICP-MS方法同时直接定量15种REE( 89 Y, 139 < / sup> La, 140 Ce, 141 Pr, 146 Nd, 147 Sm, 153 < / sup> Eu, 157 Gd, 159 Tb, 163 Dy, 165 Ho, 166 <已开发并验证了人类尿液中的/ sup> Er, 169 Tm, 172 Yb和 175 Lu)。该方法对人尿中所有REE均具有良好的线性关系,浓度范围为0.001–1.000μg∙L -1 ,r 2 -1 和0.029–0.037μg∙L -1 范围内15个REE的样本范围从93.3%到103.0%,并且重复样本的相对百分比差异小于6.2%,所有分析的日内和日间变化均小于1.28%和小于0.85%稀土元素。所开发的方法已成功应用于从对照对象和从事超细颗粒和含铈和氧化镧纳米颗粒制造工作的工人获得的31个尿液样品中测定15种稀土元素。结果表明仅尿液中的La(1.234±0.626μg∙L -1 ),Ce(1.492±0.995μg∙L -1 ),Nd(0.014暴露工人中的±0.009μg∙L -1 )和Gd(0.023±0.010μg∙L -1 )显着高于(p <0.05)测量的水平在控制对象。其中,La和Ce是主要成分,占稀土元素总量的88%。镧占稀土元素总量的27%,而铈占稀土元素含量的大部分,为61%。除未检测到的Dy外,其余元素各仅占1%。与以前发表的数据相比,工人和对照组受试者的尿中La和Ce水平显示出比以前的报告更高的趋势。

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