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采用动态反应池电感耦合等离子体质谱法(ICP-DRC-MS)对尿液进行多元素分析——实际应用。

Multi-element analysis of urine using dynamic reaction cell inductively coupled plasma mass spectrometry (ICP-DRC-MS) - a practical application.

机构信息

Department of Toxicology and Carcinogenesis, Nofer Institute of Occupational Medicine, Łódź, Poland.

出版信息

Int J Occup Med Environ Health. 2013 Apr;26(2):302-12. doi: 10.2478/s13382-013-0106-2. Epub 2013 Jun 15.

Abstract

OBJECTIVES

The method for the determination of As, Al, Cd, Ni, Pb (toxic elements) and Cr, Co, Cu, Fe, Mn, Zn (essential elements) in human urine by the use of Inductively Coupled Plasma Mass Spectrometry (quadrupole ICP-MS DRCe Elan, Perkin Elmer) with the dynamic reaction cell (DRC) was developed.

MATERIALS AND METHODS

The method has been applied for multi-element analysis of the urine of 16 non-exposed healthy volunteers and 27 workers employed in a copper smelter. The analysis was conducted after initial 10-fold dilution of the urine samples with 0,1% nitric acid. Rhodium was used as an internal standard. The method validation parameters such as detection limit, sensitivity, precision were described for all elements. Accuracy of the method was checked by the regular use of certified reference materials ClinCheck®-Control Urine (Recipe) as well as by participation of the laboratory in the German External Quality Assessment Scheme (G-EQUAS).

RESULTS

The detection limits (DL 3s) of the applied method were 0.025, 0.007, 0.002, 0.004, 0.004, 0.086, 0.037, 0.009, 0.016, 0.008, 0.064 (μg/l) for Al, As, Cd, Cr, Co, Cu, Fe, Mn, Ni, Pb, Zn in urine, respectively. For each element linearity with correlation coefficient of at least 0.999 was determined. Spectral interferences from some of the ions were removed using DRC-e with addition of alternative gas: methane for cobalt, copper, cadmium, chromium, iron, manganese, nickel and rhodium, and oxygen for arsenic.

CONCLUSIONS

The developed method allows to determine simultaneously eleven elements in the urine with low detection limits, high sensitivity and good accuracy. Moreover, the method is appropriate for the assessment of both environmental and occupational exposure.

摘要

目的

本研究采用电感耦合等离子体质谱法(四极杆电感耦合等离子体质谱仪 DRCe Elan,Perkin Elmer)和动态反应池(DRC)建立了一种测定人尿液中砷(As)、铝(Al)、镉(Cd)、镍(Ni)、铅(Pb)(有毒元素)和铬(Cr)、钴(Co)、铜(Cu)、铁(Fe)、锰(Mn)、锌(Zn)(必需元素)的方法。

材料和方法

本方法已应用于 16 名非暴露健康志愿者和 27 名铜冶炼厂工人尿液的多元素分析。尿液样本经初始 10 倍稀释后,用 0.1%硝酸进行分析。铑被用作内标。对所有元素的检测限、灵敏度、精密度等方法验证参数进行了描述。通过定期使用认证参考物质 ClinCheck®-Control Urine(Recipe)以及实验室参与德国外部质量评估计划(G-EQUAS),对方法的准确性进行了检查。

结果

应用方法的检测限(DL 3s)分别为 0.025、0.007、0.002、0.004、0.004、0.086、0.037、0.009、0.016、0.008、0.064μg/L,用于尿液中的 Al、As、Cd、Cr、Co、Cu、Fe、Mn、Ni、Pb、Zn。确定了每个元素的线性相关系数至少为 0.999。通过在 DRC-e 中添加替代气体(甲烷用于钴、铜、镉、铬、铁、锰、镍和铑,氧气用于砷),可以消除一些离子的光谱干扰。

结论

该方法可以用于测定尿液中低检测限、高灵敏度和良好准确性的 11 种元素。此外,该方法适用于环境和职业暴露的评估。

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