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人血清总甲状腺素的候选参考方法:采用电喷雾电离同位素稀释液相色谱-质谱联用技术

Candidate reference method for total thyroxine in human serum: use of isotope-dilution liquid chromatography-mass spectrometry with electrospray ionization.

作者信息

Tai Susan S-C, Sniegoski Lorna T, Welch Michael J

机构信息

Analytical Chemistry Division, National Institute of Standards and Technology, Gaithersburg, MD 20899-8392, USA.

出版信息

Clin Chem. 2002;48(4):637-42.

Abstract

BACKGROUND

There is a need for a critically evaluated reference method for thyroxine to provide an accuracy base to which routine methods can be traceable. We describe a candidate reference method involving isotope-dilution coupled with liquid chromatography/mass spectrometry.

METHODS

An isotopically labeled internal standard, thyroxine-d(5), was added to serum, followed by equilibration, protein precipitation, and ethyl acetate and solid-phase extractions to prepare samples for liquid chromatography-mass spectrometry electrospray ionization (LC/MS-ESI) analysis. For separation, a Zorbax Eclipse XDB-C(18) column was used with a mobile phase consisting of 1 mL/L acetic acid in acetonitrile-water (32:68 by volume) for positive ions and a Zorbax Extend-C(18) column with a mobile phase consisting of 2 mL/L ammonium hydroxide in methanol-water (32:68 by volume) for negative ions. M + H ions at m/z 778 and 783 for thyroxine and its labeled internal standard were monitored for positive ions and M - H ions at m/z 776 and 781 for negative ions. Samples of frozen serum pools were prepared and measured in three separate sets.

RESULTS

Within-set CVs were 0.2-1.0%. The correlation coefficients of all linear regression lines (measured intensity ratios vs mass ratios) were 0.999-1.000. Positive- and negative-ion measurements agreed with a mean difference of 0.45% at three concentrations (50, 110, and 168 microg/L). The detection limits (at a signal-to-noise ratio of approximately 3 to 5) were 30 and 20 pg for positive and negative ions, respectively. The results from the LC/MS-ESI method were within 1 SD of the composite means from many routine clinical methods, although it appears that the clinical method means may be biased high by 4-5 microg/L across the concentrations. Some routine clinical methods may be biased by up to 20% at low concentrations.

CONCLUSIONS

This well-characterized LC/MS-ESI method for total serum thyroxine with a theoretically sound approach, demonstrated good accuracy and precision, and low susceptibility to interferences qualifies as a candidate reference method. Use of this reference method as an accuracy base may reduce the apparent biases in routine methods along with the high interlaboratory imprecision.

摘要

背景

需要一种经过严格评估的甲状腺素参考方法,为常规方法提供可溯源的准确性基础。我们描述了一种涉及同位素稀释与液相色谱/质谱联用的候选参考方法。

方法

向血清中加入同位素标记的内标甲状腺素-d(5),然后进行平衡、蛋白质沉淀、乙酸乙酯和固相萃取,以制备用于液相色谱-质谱电喷雾电离(LC/MS-ESI)分析的样品。分离时,使用Zorbax Eclipse XDB-C(18)柱,流动相为乙腈-水(体积比32:68)中含1 mL/L乙酸用于正离子检测;使用Zorbax Extend-C(18)柱,流动相为甲醇-水(体积比32:68)中含2 mL/L氢氧化铵用于负离子检测。监测甲状腺素及其标记内标的m/z 778和783处的M + H离子用于正离子检测,m/z 776和781处的M - H离子用于负离子检测。制备冷冻血清混合样本并分三组进行测量。

结果

组内变异系数为0.2 - 1.0%。所有线性回归线(测量强度比与质量比)的相关系数为0.999 - 1.000。正离子和负离子测量结果在三个浓度(50、110和168 μg/L)下的平均差异为0.45%。检测限(信噪比约为3至5时)正离子为30 pg,负离子为20 pg。LC/MS-ESI方法的结果在许多常规临床方法的复合均值的1个标准差范围内,尽管似乎临床方法均值在各浓度下可能偏高4 - 5 μg/L。一些常规临床方法在低浓度时偏差可能高达20%。

结论

这种特征明确的用于总血清甲状腺素的LC/MS-ESI方法,具有理论上合理的方法,显示出良好的准确性和精密度,且抗干扰能力低,有资格作为候选参考方法。将此参考方法用作准确性基础可能会减少常规方法中明显的偏差以及实验室间的高不精密度。

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