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High Precision Zinc Stable Isotope Measurement of Certified Biological Reference Materials Using the Double Spike Technique and Multiple Collector-ICP-MS

机译:使用双尖峰技术和多重收集器ICP-MS对认证的生物参比物进行高精度锌稳定同位素测量

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摘要

Biological reference materials with well-characterised stable isotope compositions are lacking in the field of ‘isotope biochemistry’, which seeks to understand bodily processes that rely on essential metals by determining metal stable isotope ratios. Here, we present Zn stable isotope data for six biological reference materials with certified trace metal concentrations: fish muscle, bovine muscle, pig kidney, human hair, human blood serum and human urine. Replicate analyses of multiple aliquots of each material achieved reproducibilities (2sd) of 0.04–0.13‰ for δ66/64Zn (which denotes the deviation of the 66Zn/64Zn ratio of a sample from a pure Zn reference material in parts per 1000). This implies only very minor isotopic heterogeneities within the samples, rendering them suitable as quality control materials for Zn isotope analyses. This endorsement is reinforced by (i) the close agreement of our Zn isotope data for two of the samples (bovine muscle and human blood serum) to previously published results for different batches of the same material and (ii) the similarity of the isotopic data for the samples (δ66/64Zn ≈ –0.8 to 0.0‰) to previously published Zn isotope results for similar biological materials. Further tests revealed that the applied Zn separation procedure is sufficiently effective to enable accurate data acquisition even at low mass resolving power (M/ΔM ≈ 400), as measurements and analyses conducted at much higher mass resolution (M/ΔM ≈ 8500) delivered essentially identical results.Electronic supplementary materialThe online version of this article (doi:10.1007/s00216-017-0240-y) contains supplementary material, which is available to authorized users.
机译:“同位素生物化学”领域缺乏具有稳定同位素组成特征的生物参考物质,该领域旨在通过确定金属稳定同位素比率来了解依赖于必需金属的身体过程。在这里,我们介绍了六种具有微量金属浓度认证的生物参考物质的锌稳定同位素数据:鱼肌肉,牛肌肉,猪肾,人发,人血清和人尿。对每种材料的多个等分试样进行重复分析,得出δ 66/64 Zn的重现性(2sd)为0.04-0.13‰(这表示 66 Zn / 64 sup Zn比(千分之几)。这意味着样品中的同位素异质性非常小,使其适合用作Zn同位素分析的质量控制材料。 (i)我们的两个样品(牛肌肉和人血清)的锌同位素数据与同一材料的不同批次的先前发表的结果和(ii)同位素数据的相似性更加一致,从而加强了这种认可。样品(δ 66/64 Zn≈–0.8至0.0‰)与以前发表的类似生物材料的Zn同位素结果相比。进一步的测试表明,所应用的Zn分离程序即使在低质量分辨力(M /ΔM≈400)的情况下也足以有效地进行准确的数据采集,因为以基本上更高的质量分辨率(M /ΔM≈8500)进行的测量和分析电子补充材料本文的在线版本(doi:10.1007 / s00216-017-0240-y)包含补充材料,授权用户可以使用。

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