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采用在线溶液校准的激光烧蚀电感耦合等离子体质谱法对单根头发中的必需和有毒金属进行生物监测。

Biomonitoring of essential and toxic metals in single hair using on-line solution-based calibration in laser ablation inductively coupled plasma mass spectrometry.

机构信息

Departamento de Química, Universidade Federal de Santa Maria, Santa Maria, RS, Brazil.

出版信息

Talanta. 2010 Oct 15;82(5):1770-7. doi: 10.1016/j.talanta.2010.07.065. Epub 2010 Aug 5.

Abstract

Laser ablation inductively coupled plasma mass spectrometry (LA-ICP-MS) has been established as a powerful and sensitive surface analytical technique for the determination of concentration and distribution of trace metals within biological systems at micrometer spatial resolution. LA-ICP-MS allows easy quantification procedures if suitable standard references materials (SRM) are available. In this work a new SRM-free approach of solution-based calibration method in LA-ICP-MS for element quantification in hair is described. A dual argon flow of the carrier gas and nebulizer gas is used. A dry aerosol produced by laser ablation (LA) of biological sample and a desolvated aerosol generated by pneumatic nebulization (PN) of standard solutions are carried by two different flows of argon as carrier or nebulizer gas, respectively and introduced separately in the injector tube of a special ICP torch, through two separated apertures. Both argon flows are mixed directly in the ICP torch. External calibration via defined standard solutions before analysis of single hair was employed as calibration strategy. A correction factor, calculated using hair with known analyte concentration (measured by ICP-MS), is applied to correct the different elemental sensitivities of ICP-MS and LA-ICP-MS. Calibration curves are obtained by plotting the ratio of analyte ion M(+)/(34)S(+) ion intensities measured using LA-ICP-MS in dependence of analyte concentration in calibration solutions. Matrix-matched on-line calibration in LA-ICP-MS is carried out by ablating of human hair strands (mounted on a sticky tape in the LA chamber) using a focused laser beam in parallel with conventional nebulization of calibration solutions. Calibrations curves of Li, Na, Mg, Al, K, V, Cr, Mn, Fe, Ni, Co, Cu, Zn, Sr, Mo, Ag, Cd, I, Hg, Pb, Tl, Bi and U are presented. The linear correlation coefficients (R) of calibration curves for analytes were typically between 0.97 and 0.999. The limits of detection (LODs) of Li, V, Mn, Ni, Co, Cu, Sr, Mo, Ag, Ba, Cd, I, Hg, Pb, Bi and U in a single hair strand were in the range of 0.001-0.90 μg g(-1), whereas those of Cr and Zn were 3.4 and 5.1 μg g(-1), respectively. The proposed quantification strategy using on-line solution-based calibration in LA-ICP-MS was applied for biomonitoring (the spatial resolved distribution analysis) of essential and toxic metals and iodine in human hair and mouse hair.

摘要

激光烧蚀电感耦合等离子体质谱(LA-ICP-MS)已被确立为一种强大而灵敏的表面分析技术,可用于在微米空间分辨率下测定生物系统中痕量金属的浓度和分布。如果有合适的标准参考物质(SRM),LA-ICP-MS 可以进行简单的定量程序。在这项工作中,描述了一种新的无标准参考物质(SRM)的溶液校准方法,用于头发中元素的定量分析。采用双氩气载气流和雾化气流。通过激光烧蚀(LA)生物样品产生的干燥气溶胶和通过气动雾化(PN)标准溶液产生的去溶剂化气溶胶,分别由两种不同的氩气流作为载气流或雾化气流携带,并通过两个单独的孔分别引入特殊 ICP 火炬的注入管中。两种氩气流在 ICP 火炬中直接混合。在分析单根头发之前,通过分析已知分析物浓度的头发(通过 ICP-MS 测量)进行外部校准,作为校准策略。应用校正因子校正 ICP-MS 和 LA-ICP-MS 的不同元素灵敏度,该校正因子是使用具有已知分析物浓度的头发(通过 ICP-MS 测量)计算得出的。通过在 LA-ICP-MS 中测量的分析物离子 M(+) /(34)S(+)离子强度与校准溶液中分析物浓度的关系绘制校准曲线来获得校准曲线。LA-ICP-MS 中的基质匹配在线校准是通过在 LA 腔室中用胶带固定的人发(在 LA 腔室中用胶带固定)同时进行常规校准溶液的雾化来实现的。呈现了 Li、Na、Mg、Al、K、V、Cr、Mn、Fe、Ni、Co、Cu、Zn、Sr、Mo、Ag、Cd、I、Hg、Pb、Tl、Bi 和 U 的校准曲线。分析物校准曲线的线性相关系数(R)通常在 0.97 到 0.999 之间。单个发束中 Li、V、Mn、Ni、Co、Cu、Sr、Mo、Ag、Ba、Cd、I、Hg、Pb、Bi 和 U 的检出限(LOD)在 0.001 到 0.90 μg g(-1)之间,而 Cr 和 Zn 的检出限分别为 3.4 和 5.1 μg g(-1)。在 LA-ICP-MS 中使用在线溶液校准进行定量的提议策略已用于人体头发和小鼠头发中必需和有毒金属以及碘的生物监测(空间分辨分布分析)。

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