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Improved separation and detection of picolinic acid and quinolinic acid by capillary electrophoresis-mass spectrometry: Application to analysis of human cerebrospinal fluid

机译:改进的毛细管电泳-质谱法分离和检测吡啶甲酸和喹啉酸:在人脑脊髓液分析中的应用

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摘要

“Quinolinic acid (QA)”, a metabolite of the kynurenine pathway (KP), is implicated as a major neurological biomarker, which causes inflammatory disorders, whereas there is an increase evidence of the role of picolinic acid (PA) in neuroinflammation. Therefore, there is an urgent need to develop new clinical test for early diagnosis of neuroinflammatory disorders. A comparison is made between three different platforms such as high performance liquid chromatography–electrospray mass spectrometry (HPLC–ESI-MS/MS), nano LC–Chip/ESI-MS/MS, as well as the use of cationic (quaternary ammonium) and anionic (sulfonated) coated capillaries in capillary electrophoresis (CE)-ESI-MS/MS. The comparison revealed that CE-ESI-MS/MS method using a quaternary ammonium coated capillary is the best method for analysis of PA and QA. A simple stacking procedure by the inclusion of acetonitrile in the artificial cerebrospinal fluid (CSF) sample was employed to improve the peak shape and sensitivity of KP metabolites in CE-ESI-MS/MS. The developed CE-ESI-MS/MS assay provided high resolution, high specificity and high sensitivity with a total analysis time including sample preparation of nearly 12 min. In addition, excellent intra-day and inter-day repeatability of migration times and peak areas of the metabolites were observed with respective relative standard deviation (RSD) of less than 2.0% and 2.5%. Somewhat broader variations in repeatability for a 3 independently prepared coated capillary (total 35 runs each) with % RSD up to 3.8% and 5.8% was observed for migration time and peak areas, respectively. Artificial CSF was used as a surrogate matrix to simultaneously generate calibration curves over a concentration range of 0.02–10 μM for PA and 0.4–40 μM for QA. The method was then successfully applied to analyze PA and QA in human CSF, demonstrating the potential of this CE-ESI-MS/MS method to accurately quantitate with high specificity and sensitivity.
机译:犬尿氨酸途径(KP)的代谢产物“喹啉酸(QA)”被认为是引起炎症性疾病的主要神经生物学标志物,而越来越多的证据表明吡啶甲酸(PA)在神经炎症中的作用。因此,迫切需要开发用于早期诊断神经炎性疾病的新的临床测试。在三个不同的平台之间进行了比较,例如高效液相色谱-电喷雾质谱(HPLC-ESI-MS / MS),纳米LC-芯片/ ESI-MS / MS以及阳离子(季铵)的使用和毛细管电泳(CE)-ESI-MS / MS中的阴离子(磺化)涂层毛细管。比较表明,使用季铵涂层毛细管的CE-ESI-MS / MS方法是分析PA和QA的最佳方法。通过在人工脑脊髓液(CSF)样品中加入乙腈的简单堆叠程序,可改善CE-ESI-MS / MS中KP代谢物的峰形和灵敏度。发达的CE-ESI-MS / MS分析提供了高分辨率,高特异性和高灵敏度,总分析时间包括近12分钟的样品制备时间。此外,观察到代谢物的迁移时间和峰面积具有极佳的日内和日间重复性,其相对标准偏差(RSD)分别小于2.0%和2.5%。对于迁移时间和峰面积,分别观察到3个独立制备的带涂层毛细管(每个共运行35个)的RSD分别高达3.8%和5.8%时,其可重复性略有变化。人工CSF被用作替代矩阵,以同时生成浓度范围为0.02-10 µM(PA)和0.4–40μM(QA)的校准曲线。该方法随后成功地用于分析人脑脊液中的PA和QA,证明了这种CE-ESI-MS / MS方法具有高特异性和高灵敏度地准确定量的潜力。

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