Benkhedda Karima, Chen Heidi, Dabeka Robert, Cockell Kevin
Food Directorate, Health Products and Food Branch, Health Canada, 2203C Banting Research Centre, Ottawa, ON, K1A0L2, Canada.
Biol Trace Elem Res. 2008 May;122(2):179-92. doi: 10.1007/s12011-007-8070-y. Epub 2008 Jan 11.
With the perspective of embarking on a human study using a double iron (Fe) stable isotope tracer protocol to assess iron bioavailability, investigations were conducted on Fe isotope ratios in blood samples using a VG Axiom Multi-collector ICP-MS. The factors affecting the precision and accuracy of Fe isotopic ratios, such as spectral- and matrix-induced interferences and Fe recoveries from sample preparation, have been identified and optimized. Major polyatomic interferences (e.g., Ar-O, Ar-OH, and FeH) were significantly reduced by using an Aridus nebulizer and desolvating system. Isobaric metal (e.g., (54)Cr(+) on (54)Fe(+) and (58)Ni(+) on (58)Fe(+)) interferences and Ca-oxides and hydroxides were quantitatively removed during chemical purification of blood samples and selective isolation of Fe by anion-exchange resin, after mineralization of the blood samples by microwave digestion. Quantitative recoveries of Fe from different steps of sample preparation were verified using whole blood reference material. Fe isotopic compositions of the samples were corrected for instrumental mass bias by the standard-sample bracketing method using the certified reference standard IRMM-014. External precisions on the order of 0.008-0.05 (% RSD), 0.007-0.015 (% RSD), and 0.03-0.09 (% RSD) were obtained for (54)Fe/(56)Fe, (57)Fe/(56)Fe, and (58)Fe/(56)Fe, respectively, in the blood for three replicate measurements. The level of precision obtained in this work enables the detection of low enrichments of Fe in blood, which is highly desired in nutrition tracer studies.
基于采用双铁(Fe)稳定同位素示踪方案开展人体研究以评估铁生物利用度的视角,使用VG Axiom多接收电感耦合等离子体质谱仪对血样中的铁同位素比率进行了研究。已识别并优化了影响铁同位素比率精密度和准确度的因素,如光谱和基质诱导干扰以及样品制备过程中的铁回收率。通过使用Aridus雾化器和去溶剂化系统,显著降低了主要的多原子干扰(如Ar - O、Ar - OH和FeH)。在血样经微波消解矿化后,通过阴离子交换树脂对血样进行化学纯化和选择性分离铁的过程中,定量去除了同量异位金属(如(^{54}Cr^+)对(^{54}Fe^+)以及(^{58}Ni^+)对(^{58}Fe^+))干扰以及钙的氧化物和氢氧化物。使用全血标准物质验证了样品制备不同步骤中铁的定量回收率。通过使用经认证的参考标准物质IRMM - 014,采用标准 - 样品夹心法对样品的铁同位素组成进行仪器质量偏差校正。对血样进行三次重复测量时,(^{54}Fe/^{56}Fe)、(^{57}Fe/^{56}Fe)和(^{58}Fe/^{56}Fe)的外部精密度分别达到了0.008 - 0.05(%RSD)、0.007 - 0.015(%RSD)和0.03 - 0.09(%RSD)。本研究获得的精密度水平能够检测出血液中低丰度的铁,这在营养示踪研究中是非常需要的。