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采用 HPLC-FLD-MS/MS 结合响应面法优化衍生化条件,建立了一种选择性和灵敏的柱前衍生化 HPLC-FLD-MS/MS 法测定人血清中痕量氨基酸。

Determination of trace amino acids in human serum by a selective and sensitive pre-column derivatization method using HPLC-FLD-MS/MS and derivatization optimization by response surface methodology.

机构信息

Northwest Plateau Institute of Biology, Chinese Academy of Sciences, Xining, People's Republic of China.

出版信息

Amino Acids. 2011 Apr;40(4):1185-93. doi: 10.1007/s00726-010-0742-9. Epub 2010 Sep 16.

Abstract

Analysis of trace amino acids (AA) in physiological fluids has received more attention, because the analysis of these compounds could provide fundamental and important information for medical, biological, and clinical researches. More accurate method for the determination of those compounds is highly desirable and valuable. In the present study, we developed a selective and sensitive method for trace AA determination in biological samples using 2-[2-(7H-dibenzo [a,g]carbazol-7-yl)-ethoxy] ethyl chloroformate (DBCEC) as labeling reagent by HPLC-FLD-MS/MS. Response surface methodology (RSM) was first employed to optimize the derivatization reaction between DBCEC and AA. Compared with traditional single-factor design, RSM was capable of lessening laborious, time and reagents consumption. The complete derivatization can be achieved within 6.3 min at room temperature. In conjunction with a gradient elution, a baseline resolution of 20 AA containing acidic, neutral, and basic AA was achieved on a reversed-phase Hypersil BDS C(18) column. This method showed excellent reproducibility and correlation coefficient, and offered the exciting detection limits of 0.19-1.17 fmol/μL. The developed method was successfully applied to determinate AA in human serum. The sensitive and prognostic index of serum AA for liver diseases has also been discussed.

摘要

分析痕量氨基酸(AA)在生理液体中受到了更多的关注,因为这些化合物的分析可以为医学、生物学和临床研究提供基础和重要的信息。因此,人们非常希望和需要建立更准确的方法来测定这些化合物。在本研究中,我们使用 2-[2-(7H-二苯并[a,g]咔唑-7-基)乙氧基]乙基氯甲酸酯(DBCEC)作为标记试剂,通过 HPLC-FLD-MS/MS 建立了一种用于生物样品中痕量 AA 测定的选择性和灵敏的方法。响应面法(RSM)首先被用于优化 DBCEC 与 AA 的衍生化反应。与传统的单因素设计相比,RSM 可以减少繁琐的工作、时间和试剂的消耗。在室温下,完全衍生化可以在 6.3 分钟内完成。结合梯度洗脱,在反相 Hypersil BDS C(18)柱上实现了 20 种含有酸性、中性和碱性 AA 的 AA 的基线分离。该方法具有良好的重现性和相关性,检测限为 0.19-1.17 fmol/μL。该方法成功地应用于人血清中 AA 的测定,并讨论了血清 AA 作为肝脏疾病的敏感和预后指标的意义。

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