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钆造影剂干扰导致血浆硒假性升高:一种解决分析前问题的新方法。

Falsely elevated plasma selenium due to gadolinium contrast interference: a novel solution to a preanalytical problem.

作者信息

Ryan Joshua B, Grant Susan, Walmsley Trevor, Florkowski Christopher M, George Peter M

机构信息

Canterbury Health Laboratories, Christchurch, New Zealand

Canterbury Health Laboratories, Christchurch, New Zealand.

出版信息

Ann Clin Biochem. 2014 Nov;51(Pt 6):714-6. doi: 10.1177/0004563214529262. Epub 2014 Mar 31.

Abstract

BACKGROUND

Trace elements are commonly measured by inductively coupled mass spectrometry (ICP-MS). A 30-year-old man had a plasma selenium (Se) concentration on ICP-MS of 66 µmol/L (reference interval 0.45-1.40), a potentially lethal level, despite no history of Se exposure or toxicity symptoms. He had earlier undergone magnetic resonance imaging with a gadolinium (Gd) contrast agent, which is known to interfere with Se on ICP-MS. We aimed to adjust our method by monitoring a second Se isotope that is unaffected by Gd to detect this preanalytical interference.

METHODS

Plasma samples referred for trace metal testing had Se measured on ICP-MS (monitoring (78)Se), which we modified to also monitor a second isotope ((82)Se). The modified method was then applied to a specimen with known Gd contamination.

RESULTS

Plasma Se results (n = 41) derived from monitoring the two different Se isotopes were similar with a good correlation (R (2 )= 0.991) over a range of 0.23-2.21 µmol/L. On repeat analysis, our patient had a Se concentration of 65 µmol/L using the (78)Se isotope but only 1.43 µmol/L using (82)Se.

CONCLUSION

To avoid reporting a falsely elevated plasma Se result, we suggest that Se analysis by ICP-MS should include a second Se isotope for monitoring, that is not subject to Gd interference.

摘要

背景

微量元素通常通过电感耦合等离子体质谱法(ICP-MS)进行测量。一名30岁男性的血浆硒(Se)浓度经ICP-MS测定为66µmol/L(参考区间为0.45 - 1.40),这一水平具有潜在致死性,尽管他并无硒暴露史或中毒症状。他此前曾接受过使用钆(Gd)造影剂的磁共振成像检查,已知该造影剂会干扰ICP-MS对硒的测定。我们旨在通过监测不受Gd影响的第二种硒同位素来调整我们的方法,以检测这种分析前干扰。

方法

送检进行痕量金属检测的血浆样本,采用ICP-MS测定硒(监测(78)Se),我们对其进行了改进,使其同时监测第二种同位素((82)Se)。然后将改进后的方法应用于已知受Gd污染的样本。

结果

在0.23 - 2.21µmol/L范围内,通过监测两种不同硒同位素得出的血浆硒结果(n = 41)相似,相关性良好(R² = 0.991)。在重复分析中,我们的患者使用(78)Se同位素时硒浓度为65µmol/L,但使用(82)Se时仅为1.43µmol/L。

结论

为避免报告血浆硒结果出现假性升高,我们建议ICP-MS进行硒分析时应包括第二种不受Gd干扰的硒同位素监测。

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