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Quantification of 22 plasma amino acids combining derivatization and ion-pair LC-MS/MS

机译:结合衍生化和离子对LC-MS / MS对22种血浆氨基酸进行定量

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Time efficient and comprehensive quantification of amino acids continues to be a challenge. We developed a sensitive and precise method for quantitative analysis of amino acids from very small plasma and serum volumes. Ion-pair chromatography of amino acid butyl esters proved to provide an optimal combination of selectivity, sensitivity and robustness. 10 μL of plasma or serum are added to precipitation reagent containing stable isotope standards. After protein precipitation, the supernatants is dried and incubated with 3. N butanolic HCl for improving chromatographic separation and ionization efficiency. Amino acid butyl esters are separated using ion-pair (heptafluorobutyric acid) reversed-phase chromatography coupled to triple quadrupole mass spectrometry. The established method enables quantitative analysis of 22 amino acids, all 20 proteinogenic amino acids, ornithine and citrulline. Cysteine is measured as cystine. The combination of precipitation, derivatization and chromatographic separation effectively avoids ion suppression and coelution. Simultaneous with quantification, analyte identity is verified in each sample using qualifier ions. The micro-method is very sensitive and accurate. The intra-assay precision for the analysis of plasma was 2.6-10.1%. Absolute accuracy as determined by comparison of external reference samples was 82-117.7%. Excellent linearity of detection response was demonstrated for all compounds in the range representative for clinical samples from infants and adults. Lower limits of quantification were in the range of 1 μmol/L for all analytes. In conclusion, the method is ideally suited for cost-effective high-throughput analysis of large numbers of samples in clinical studies and metabolomics research.
机译:时间高效且全面的氨基酸定量仍然是一个挑战。我们开发了一种灵敏而精确的方法,用于从非常小的血浆和血清中定量分析氨基酸。氨基酸丁酯的离子对色谱法证明可以提供选择性,灵敏度和耐用性的最佳组合。将10μL血浆或血清添加到含有稳定同位素标准品的沉淀试剂中。蛋白质沉淀后,将上清液干燥并与3. N丁醇HCl孵育,以改善色谱分离和电离效率。使用离子对(七氟丁酸)反相色谱与三重四极杆质谱联用分离氨基酸丁酯。建立的方法可以定量分析22种氨基酸,所有20种蛋白原氨基酸,鸟氨酸和瓜氨酸。半胱氨酸被测量为胱氨酸。沉淀,衍生化和色谱分离相结合可有效避免离子抑制和共洗脱。与定量同时,使用定性离子验证每个样品中的分析物身份。微观方法非常敏感和准确。血浆分析的批内分析准确度为2.6-10.1%。通过比较外部参考样品确定的绝对准确度为82-117.7%。在代表婴儿和成人临床样品的范围内的所有化合物中,检测响应均具有出色的线性。所有分析物的定量下限在1μmol/ L范围内。总之,该方法非常适合在临床研究和代谢组学研究中对大量样品进行经济高效的高通量分析。

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