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Development of a liquid chromatography-mass spectrometry method for the high-accuracy determination of creatinine in serum

机译:液相色谱-质谱联用测定血清中肌酐的方法的建立

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An LC-MS method for the high-accuracy determination of creatinine in serum has been developed and used to provide results for an international measurement evaluation programme (IMEP) and the Comite Consultatif pour la Quantite de Matiere (CCQM) international inter-laboratory studies. An assessment of different sample preparation methods, including ion-exchange chromatography, solid-phase extraction, plasma ultrafiltration and ethanol protein precipitation, revealed that no bias or reduced precision was associated with the quicker less extensive clean-up methods, when using liquid chromatography-isotope dilution mass spectrometry (LC-IDMS) for quantitation. A number of different calibration regimes were also investigated. External calibration was shown to provide adequate calibration for most routine analysis with a relative associated expanded uncertainty (k = 2) of 6% at the 95% confidence level. The use of a non-isotopically labelled internal standard was shown to improve the relative expanded uncertainty (k = 2) to 4%. However, the difference in retention time between the internal standard and the creatinine was such that a matrix interferent produced an observed bias of over 16%. The use of an isotopically labelled internal standard was shown to reduce any bias to less than 0.2% with an expanded uncertainty (k=2) of less than 0.3%. The developed method was then used, in a blind trial organised jointly by IMEP and CCQM, to determine the amount of creatinine in human serum. The method performed well against the established reference method of ion-exchange chromatography followed by derivatisation gas chromatography (GC)-IDMS. The observed difference between the values determined by LC-IDMS and the key comparison reference value (average of all the submitted results) was less than 0.3%. The biggest advantage of the described method is in the speed of analysis. With a chromatographic run time of less than 10 min and sample preparation consisting of a simple protein precipitation, without the need for a derivatisation stage, the analysis is vastly simpler then the conventional GC-IDMS reference method.
机译:已经开发出了一种LC-MS方法,用于高精度测定血清中的肌酐,该方法可为国际测量评估计划(IMEP)和国际定量研究委员会(CCQM)国际实验室间研究提供结果。对不同样品制备方法的评估,包括离子交换色谱法,固相萃取,血浆超滤和乙醇蛋白沉淀,发现使用液相色谱法时,较快,较不广泛的纯化方法没有偏倚或降低了精密度。同位素稀释质谱(LC-IDMS)进行定量。还研究了许多不同的校准方案。事实证明,外部校准可为大多数常规分析提供足够的校准,在95%置信水平下的相对相关扩展不确定度(k = 2)为6%。使用非同位素标记的内标可将相对不确定度(k = 2)提高到4%。但是,内标和肌酸酐之间保留时间的差异使得基质干扰物产生的偏差超过16%。结果表明,使用同位素标记的内标可将任何偏差降低至小于0.2%,而不确定度(k = 2)则小于0.3%。然后,在IMEP和CCQM共同组织的一项盲试验中,使用了开发的方法来测定人血清中的肌酐含量。该方法相对于已建立的离子交换色谱法,然后是衍生化气相色谱法(GC)-IDMS的参考方法,表现良好。通过LC-IDMS确定的值与关键比较参考值(所有提交结果的平均值)之间观察到的差异小于0.3%。所述方法的最大优点在于分析速度。色谱运行时间少于10分钟,样品制备仅需简单的蛋白质沉淀,无需衍生化步骤,因此与传统的GC-IDMS参考方法相比,分析要简单得多。

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