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Determination of Urinary Pterins by Capillary Electrophoresis Coupled with LED-Induced Fluorescence Detector

机译:毛细管电泳-LED诱导荧光检测器测定尿中的蝶呤

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摘要

Urinary pterins have been found as potential biomarkers in many pathophysiological conditions including inflammation, viral infections, and cancer. However, pterins determination in biological samples is difficult due to their degradation under exposure to air, light, and heat. Besides, they occur at shallow concentration levels, and thus, standard UV detectors cannot be used without additional sample preconcentration. On the other hand, ultra-sensitive laser-induced fluorescence (LIF) detection can be used since pterins exhibit native fluorescence. The main factor that limits an everyday use of LIF detectors is its high price. Here, an alternative detector, i.e., light-emitted diode induced fluorescence (LEDIF) detector, was evaluated for the determination of pterins in urine samples after capillary electrophoresis (CE) separation. An optimized method was validated in terms of linearity range, limit of detection (LOD), limit of quantification (LOQ), intra- and interday precision and accuracy, sample stability in the autosampler, and sample stability during the freezing/thawing cycle. The obtained LOD (0.1 μM) and LOQ (0.3 μM) values were three-order of magnitude lower compared to UV detector, and two orders of magnitude higher compared to previously reported house-built LIF detector. The applicability of the validated method was demonstrated in the analysis of urine samples from healthy individuals and cancer patients.
机译:在许多病理生理条件下,包括炎症,病毒感染和癌症,已发现尿蝶呤是潜在的生物标志物。但是,由于生物样品在暴露于空气,光和热下会降解,因此很难确定其中的蝶呤。此外,它们以较浅的浓度水平出现,因此,如果没有额外的样品预浓缩,则无法使用标准的紫外线检测器。另一方面,由于蝶呤显示天然荧光,因此可以使用超灵敏的激光诱导荧光(LIF)检测。限制LIF检测器日常使用的主要因素是其高昂的价格。在此,评估了另一种检测器,即发光二极管感应荧光(LEDIF)检测器,用于在毛细管电泳(CE)分离后测定尿液样品中的蝶呤。在线性范围,检测限(LOD),定量限(LOQ),日内和日间精度和准确性,自动进样器中的样品稳定性以及冷冻/解冻周期中的样品稳定性方面,对一种优化的方法进行了验证。与UV检测器相比,获得的LOD(0.1μM)和LOQ(0.3μM)值降低了三个数量级,与先前报道的内置LIF检测器相比,获得了更高的两个数量级。在分析来自健康个体和癌症患者的尿液样本中证明了该验证方法的适用性。

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