首页> 外文期刊>Electrophoresis: The Official Journal of the International Electrophoresis Society >Capillary electrophoresis-time of flight-mass spectrometry using noncovalently bilayer-coated capillaries for the analysis of amino acids in human urine.
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Capillary electrophoresis-time of flight-mass spectrometry using noncovalently bilayer-coated capillaries for the analysis of amino acids in human urine.

机译:使用非共价双层涂层毛细管的毛细管电泳-飞行时间质谱法分析人尿中的氨基酸。

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摘要

A capillary electrophoresis-time of flight-mass spectrometry (CE-TOF-MS) method for the analysis of amino acids in human urine was developed. Capillaries noncovalently coated with a bilayer of Polybrene (PB) and poly(vinyl sulfonate) (PVS) provided a considerable EOF at low pH, thus facilitating the fast separation of amino acids using a BGE of 1 M formic acid (pH 1.8). The PB-PVS coating proved to be very consistent yielding stable CE-MS patterns of amino acids in urine with favorable migration time repeatability (RSDs 2%). The relatively low sample loading capacity of CE was circumvented by an in-capillary preconcentration step based on pH-mediated stacking allowing 100-nL sample injection (i.e. ca. 4% of capillary volume). As a result, LODs for amino acids were down to 20 nM while achieving satisfactory separation efficiencies. Preliminary validation of the method with urine samples showed good linear responses for the amino acids (R(2) 0.99), and RSDs for peak areas were 10%. Special attention was paid to the influence of matrix effects on the quantification of amino acids. The magnitude of ion suppression by the matrix was similar for different urine samples. The CE-TOF-MS method was used for the analysis of urine samples of patients with urinary tract infection (UTI). Concentrations of a subset of amino acids were determined and compared with concentrations in urine of healthy controls. Furthermore, partial least squares-discriminant analysis (PLS-DA) of the CE-TOF-MS dataset in the 50-450 m/z region showed a distinctive grouping of the UTI samples and the control samples. Examination of score and loadings plot revealed a number of compounds, including phenylalanine, to be responsible for grouping of the samples. Thus, the CE-TOF-MS method shows good potential for the screening of body fluids based on the analysis of endogenous low-molecular weight metabolites such as amino acids and related compounds.
机译:建立了毛细管电泳-飞行时间质谱(CE-TOF-MS)分析人尿中氨基酸的方法。非共价包覆有聚乙烯(PB)和聚(乙烯基磺酸盐)(PVS)双层的毛细管在低pH值下提供了相当可观的EOF,因此使用1 M甲酸(pH 1.8)的BGE可以快速分离氨基酸。事实证明,PB-PVS涂层非常稳定,可产生尿液中氨基酸的稳定CE-MS模式,并具有良好的迁移时间重复性(RSDs <2%)。 CE的相对较低的样品加载能力通过基于pH介导的堆叠的毛细管内预浓缩步骤得以解决,该步骤允许进样100 nL样品(即毛细管体积的约4%)。结果,氨基酸的LOD降低至20 nM,同时实现了令人满意的分离效率。尿液样品方法的初步验证显示氨基酸具有良好的线性响应(R(2)> 0.99),峰面积的RSDs <10%。特别注意基质效应对氨基酸定量的影响。对于不同的尿液样品,基质对离子的抑制程度相似。 CE-TOF-MS方法用于分析尿路感染(UTI)患者的尿液样品。确定了一部分氨基酸的浓度,并将其与健康对照组尿液中的浓度进行比较。此外,CE-TOF-MS数据集在50-450 m / z区域的偏最小二乘判别分析(PLS-DA)显示了UTI样品和对照样品的独特分组。检查比分和负荷图表明,包括苯丙氨酸在内的许多化合物负责样品的分组。因此,基于对内源性低分子量代谢物(例如氨基酸和相关化合物)的分析,CE-TOF-MS方法显示出良好的体液筛查潜力。

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