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首页> 外文期刊>Journal of the Chilean Chemical Society >METHODOLOGICAL VALIDATION FOR THE DETERMINATION OF TOXIC ARSENIC SPECIES IN HUMAN URINE USING HPLC WITH ICP-MS
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METHODOLOGICAL VALIDATION FOR THE DETERMINATION OF TOXIC ARSENIC SPECIES IN HUMAN URINE USING HPLC WITH ICP-MS

机译:ICP-MS HPLC法测定人尿中有毒砷的方法学验证

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There is a significant amount of arsenic species in the environment and in biological systems; however, the toxicity and possibly the carcinogenicity of ingested arsenic depend on the species and the oxidation state. Therefore, analytical methodologies and techniques that are fast and robust, that involve highly efficient separation and are powerful tools of detection are necessary for the correct quantification of individual arsenic species. The field of speciation analysis of arsenic in this area has grown rapidly in recent years, especially with the application of liquid chromatography and mass spectrometry with inductively coupled plasma. This study aimed to develop and apply this technique to human urine samples in order to reduce the treatment needed for speciation, maintain maximum recovery and avoid interconversion and / or degradation between species. In order to optimize the separation of species, several experiments were performed by preparing the mobile phase at different pH values. The optimal pH value and the linearity of the method were determined and the methodology was validated using a Certified Reference Material. Student's t-test and Fisher F-test for determination of accuracy and precision were applied. A simple, rapid and reliable method for the separation and quantification of several species of arsenic, As III (Arsenite), As V (Arsenate), MMA (Monomethyl Arsonic Acid), DMA (Dimethyl Arsinic Acid), AB (Arsenobetaine) was developed in human urine samples with minimal prior sample preparation. The time required for sample processing and isocratic chromatographic analysis is about 15 minutes. Detection limits of 0.020 μgL-1 of AsB, 0.020 μgL-1 of As III, 0.040 μgL-1 of DMA, 0.060 μgL-1 of MMA and 0.060 μgL-1 of As V were achieved under the analytical conditions mentioned above.
机译:环境和生物系统中存在大量的砷物种;然而,摄入砷的毒性和可能的​​致癌性取决于物种和氧化态。因此,快速而稳健的分析方法和技术,包括高效的分离和强大的检测工具,对于正确定量单个砷物质是必需的。近年来,该领域的砷形态分析领域发展迅速,尤其是在液相色谱和质谱联用电感耦合等离子体的应用中。这项研究旨在开发这项技术并将其应用于人类尿液样本,以减少物种形成所需的处理,保持最大回收率并避免物种之间的相互转化和/或降解。为了优化物质的分离,通过在不同pH值下制备流动相进行了一些实验。确定了最佳的pH值和方法的线性,并使用了经过认证的参考材料对方法进行了验证。使用学生t检验和Fisher F检验确定准确性和精密度。开发了一种简单,快速和可靠的方法来分离和定量几种砷,As III(砷)​​,As V(砷),MMA(一甲基砷酸),DMA(二甲基砷酸),AB(砷甜菜碱)在人类尿液样品中进行最少的事前样品制备。样品处理和等度色谱分析所需的时间约为15分钟。在上述分析条件下,获得了AsB 0.020μgL-1,As III 0.020μgL-1,DMA 0.040μgL-1,MMA 0.060μgL-1和As V 0.060μgL-1的检测限。

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