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首页> 外文期刊>Analytica chimica acta >Arsenic speciation analysis of human urine using ion exchange chromatography coupled to inductively coupled plasma mass spectrometry
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Arsenic speciation analysis of human urine using ion exchange chromatography coupled to inductively coupled plasma mass spectrometry

机译:离子交换色谱-电感耦合等离子体质谱法测定人尿中的砷形态

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摘要

A sensitive and robust method for the determination of seven inorganic and organic arsenic species was developed using ion exchange chromatography combined with inductively coupled plasma mass spectrometry(IC-ICP-MS).Both anion and cation exchange columns were used in a complementary fashion.Arsenite(As(III)),arsenate(As(V)),monomethylarsonic acid(MMA(V))and dimethylarsinic acid(DMA(V))were selectively separated by an anion exchange column using sodium hydroxide(NaOH)gradient elution,while monomethylarsonous acid(MMA(III)),dimethylarsinous acid(DMA(III))and arsenobetaine(AsB)were separated by a cation exchange column using 70 mM nitric acid as the mobile phase.Baseline separation,high repeatability and low detection limits(0.10-0.75 ng mL~(-1))were achieved.The spiked urine samples were analyzed with this method to evaluate the matrix effect on the method.The results suggest 1-10 dilutions should be made to urine samples before sample injection for the anion exchange analysis to minimize the matrix effect.To validate the method,a new standard reference material(NIST SRM-2670a)was also analyzed.The arsenic species in NIST SRM-2670a were determined by this method,and the sum of their concentrations agreed well with the total arsenic content certified for NIST SRM-2670a.Moreover,this method was applied to measure arsenic species in urine samples from one subject living in New Jersey who drank well water contaminated with arsenic.By this method,two key arsenic metabolites,MMA(III)and DMA(III),were found to be present in these urine samples,which has previously been rarely reported.
机译:离子交换色谱-电感耦合等离子体质谱法(IC-ICP-MS)建立了一种灵敏而稳定的测定7种无机和有机砷的方法,阴离子和阳离子交换柱都可以互补使用。使用氢氧化钠(NaOH)梯度洗脱,通过阴离子交换柱选择性地分离(As(III)),砷酸(As(V)),单甲基砷酸(MMA(V))和二甲基砷酸(DMA(V)),同时以70 mM硝酸为流动相,通过阳离子交换柱分离出单甲基亚砷酸(MMA(III)),二甲基亚砷酸(DMA(III))和砷基甜菜碱(AsB)。基线分离,高重复性和低检测限(0.10)达到-0.75 ng mL((-1))。使用该方法分析加标的尿液样品,以评估该方法对基质的影响。结果表明,在进样阴离子之前应对尿液样品进行1-10倍稀释与minimi交换分析为了验证该方法的有效性,还分析了一种新的标准参考物质(NIST SRM-2670a)。用该方法测定了NIST SRM-2670a中的砷种类,其总和与总浓度相吻合。砷含量已通过NIST SRM-2670a认证。此外,该方法还用于测量新泽西州一名饮用了被砷污染的井水的受试者尿液样品中的砷种类。通过该方法,两种主要的砷代谢物MMA(III)在这些尿液样本中发现了DMA(III)和DMA(III),以前很少报道。

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