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Determination of selenium in biological materials by isotope dilution analysis with an octapole reaction system ICP-MS

机译:八极杆反应系统ICP-MS通过同位素稀释分析法测定生物材料中的硒

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An inductively coupled plasma quadrupole mass spectrometer (ICP-QMS) with an octapole reaction system (ORS) was used for the determination of selenium by isotope dilution analysis (IDA) in biological reference materials and serum samples from healthy subjects. The potentially interfering argon dimers (~(40)Ar~(38)Ar~+ and ~(40)Ar_2~+) at the selenium masses 78 and 80 were almost eliminated by the use of hydrogen as reaction gas. Thus, the detection limits were improved five times for ~(78)Se and the measurement of ~(80)Se (the main selenium isotope with an abundance of 49.61%) is now possible. An enriched ~(77)Se solution was prepared and characterized by reverse IDA and isotope ratios measured were ~(78)Se/~(77)Se and ~(80)Se/~(77)Se. Instrumental parameters were optimised in order to obtain optimal precision and accuracy in the isotope ratio measurement of Se by ORS-ICP-QMS. The precision achieved for the isotope ratio measurements reached 0.2% (RSD for n = 5) for both ratios. Systematic errors, including detector dead time (47 +- 2 ns), mass bias effects (about 3%) and spectroscopic interferences due to the presence of bromine in the samples, were corrected. The accuracy of the measured selenium isotope ratios was improved by correcting the intensity signals of the selenium isotopes for SeH~+ formation (about 3%). The proposed IDA method has been applied to the determination of Se in biological reference materials (serum, urine and tissues) and the results showed good agreement with the certified values.
机译:电感耦合等离子体四极质谱仪(ICP-QMS)和八极反应系统(ORS)用于通过同位素稀释分析(IDA)测定生物参比材料和健康受试者血清样品中的硒。通过使用氢气作为反应气体,几乎消除了硒质量78和80处潜在的干扰氩二聚体(〜(40)Ar〜(38)Ar〜+和〜(40)Ar_2〜+)。因此,〜(78)Se的检出限提高了5倍,现在可以测量〜(80)Se(主要硒同位素,丰度为49.61%)。制备了富集的〜(77)Se溶液,并通过反向IDA进行了表征,测得的同位素比为〜(78)Se /〜(77)Se和〜(80)Se /〜(77)Se。对仪器参数进行了优化,以便通过ORS-ICP-QMS获得最佳的硒同位素比测量精度和准确度。两种比率的同位素比率测量所达到的精度均达到0.2%(n = 5时的RSSD)。纠正了系统错误,包括检测器死区时间(47±2 ns),质量偏差效应(约3%)和由于样品中存在溴引起的光谱干扰。通过校正硒同位素形成SeH〜+的强度信号(约3%),可以提高硒同位素比值的测量精度。拟议的IDA方法已用于测定生物参考物质(血清,尿液和组织)中的硒,结果与标准值吻合良好。

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