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Chip electrophoresis of active banana ingredients with label-free detection utilizing deep UV native fluorescence and mass spectrometry

机译:活性香蕉成分的芯片电泳,采用深紫外天然荧光和质谱技术进行无标记检测

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In the present work, we report on a rapid and straightforward approach for the determination of biologically active compounds in bananas applying microchip electrophoresis (MCE). For this purpose, we applied label-free detection utilizing deep UV fluorescence detection with excitation at 266 nm. Using this approach, we could identify dopamine and serotonin, their precursors tryptophan and tyrosine and also the isoquinoline alkaloid salsolinol in less than 1 min. In bananas, after 10 days of ripening, we additionally found the compound levodopa which is a metabolite of the tyrosine pathway. Quantitative analysis of extracts by external calibration revealed concentrations of serotonin, tryptophan, and tyrosine from 2.7 to 7.6 μg/mL with relative standard deviations of less than 3.5%. The corresponding calibration plots showed good linearity with correlation coefficients higher than 0.985. For reliable peak assignment, the compounds were also analyzed by coupling chip electrophoresis with mass spectrometry. This paper demonstrates exemplarily the applicability of MCE with native fluorescence detection for rapid analysis of natural compounds in fruits and reveals the potential of chip-based separation systems for the analysis of complex mixtures.
机译:在当前的工作中,我们报告了一种快速而直接的方法,用于应用微芯片电泳(MCE)测定香蕉中的生物活性化合物。为此,我们应用了无标记检测,该检测利用了在266 nm处激发的深紫外荧光检测。使用这种方法,我们可以在不到1分钟的时间内鉴定出多巴胺和5-羟色胺,它们的前体色氨酸和酪氨酸,以及异喹啉生物碱salsolinol。在香蕉中,成熟十天后,我们还发现了化合物左旋多巴,它是酪氨酸途径的代谢产物。通过外部校准对提取物进行定量分析,发现血清素,色氨酸和酪氨酸的浓度从2.7至7.6μg/ mL,相对标准偏差小于3.5%。相应的校准图显示出良好的线性,相关系数高于0.985。为了获得可靠的峰分配,还通过将芯片电泳与质谱联用对化合物进行了分析。本文示例性地证明了MCE与天然荧光检测技术在水果中天然化合物快速分析中的适用性,并揭示了基于芯片的分离系统在分析复杂混合物中的潜力。

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