首页> 外文期刊>Journal of trace elements in medicine and biology: Organ of the Society for Minerals and Trace Elements (GMS) >The potential of inductively coupled plasma mass spectrometry (ICP-MS) for the simultaneous determination of trace elements in whole blood, plasma and serum.
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The potential of inductively coupled plasma mass spectrometry (ICP-MS) for the simultaneous determination of trace elements in whole blood, plasma and serum.

机译:电感耦合等离子体质谱(ICP-MS)的电位,用于同时测定全血,血浆和血清中的微量元素。

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摘要

The advantages accruing to biochemical and clinical investigations from a method that allows the simultaneous quantification (RSD < or = 10%) of many elements in blood, plasma, and serum at concentrations equal to one-hundredth of the lower limits of the normal ranges are undeniable. The suitability of inductively coupled argon plasma low-resolution quadrupole mass spectrometry (ICP-MS), a simultaneous method with low detection limits, is evaluated for the quantification of inorganic constituents in whole blood, plasma, and serum with consideration of the dilution associated with the mineralization of the samples, of isobaric and polyatomic interferences and of normal ranges. Of the 3 bulk elements, the 3 major electrolytes, the 15 essential elements, the 8 toxic elements, the 4 therapeutic elements, and the 14 elements of potential interest (total of 47 elements) only 7 elements (Ca, Cu, K, Mg, Rb, Sr, Zn) can be simultaneously quantified under these rigorous conditions in serum and only 8 elements (additional element Pb) in whole blood. Quantification of elements in the Seronorm Standards "Whole Blood" and "Serum" showed, that this list of simultaneously determinable elements in these matrices is reasonable. Although this list is disappointingly short, the number of elements determinable simultaneously by ICP-MS is still larger than that by ICP-AES or GFAAS. Improved detectors, more efficient nebulizers, avoidance of interferences, better instrument design, and high-resolution mass spectrometers promise to increase the number of elements that can be determined simultaneously.
机译:从允许血液,血浆和血清中同时定量(RSD <或= 10%)的方法的生物化学和临床研究的优点是血液,血浆和血清的浓度等于正常范围的百分之一度的百分之一级不可否认。对稀释性的稀释液相同,评估电感耦合氩等离子体低分辨率高分子高分子质谱(ICP-MS),同时进行了低检测限的方法,用于定量全血,血浆和血清的无机成分。样品的矿化,异常和多种状体干扰和正常范围。在3个散装元素中,3个主要电解质,15个基本元素,8个有毒元素,4种治疗元素,以及潜在兴趣的14个元素(总共47元素)仅为7个元素(Ca,Cu,K,Mg ,Rb,Sr,Zn)可以在血清中的这些严格的条件下同时定量,并且在全血中只有8个元素(附加元素Pb)。定量Seronorm标准“全血”和“血清”显示,这些矩阵中同时可确定元素的列表是合理的。虽然该列表令人失望的是,但ICP-MS可同时确定的元素数量仍然比ICP-AES或GFAAS更大。改进的探测器,更高效的雾化器,避免干扰,更好的仪器设计和高分辨率质谱仪承诺增加可以同时确定的元件的数量。

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