Centro para la Calidad de los Alimentos, Instituto Nacional de Investigación Y Tecnología Agraria y Alimentaria (INIA), C/ José Tudela s/n, 42004 Soria, Spain.
Anal Chim Acta. 2011 Jan 31;685(2):204-11. doi: 10.1016/j.aca.2010.11.031. Epub 2010 Nov 19.
A fast HPLC method with diode-array absorbance detector and fluorescence detector for the analysis of 19 phenolic acids, flavan-3-ols, flavones, flavonols and caffeine in different types of samples was developed. Using a C(18) reverse-phase fused-core column separation of all compounds was achieved in less than 5 min with an overall sample-to-sample time of 10 min. Evaluation of chromatographic performance revealed excellent reproducibility, resolution, selectivity and peak symmetry. Limits of detection for all analyzed compounds ranged from 0.5 to 211 μg L(-1), while limits of quantitation ranged between 1.5 and 704 μg L(-1). The developed method was used for the determination of analytes present in different samples, including teas (black, white, green), mate, coffee, cola soft drink and an energetic drink. Concentration of the analyzed compounds occurring in the samples ranged from 0.4 to 314 mg L(-1). Caffeine was the analyte found in higher concentrations in all samples. Phytochemical profiles of the samples were consistent with those reported in the literature.
建立了一种快速高效液相色谱法,二极管阵列吸收检测器和荧光检测器,用于分析不同类型样品中的 19 种酚酸、黄烷-3-醇、黄酮、黄酮醇和咖啡因。使用 C(18)反相融合核柱,所有化合物在不到 5 分钟内实现分离,总样品到样品时间为 10 分钟。色谱性能评估显示出优异的重现性、分辨率、选择性和峰对称性。所有分析物的检测限范围为 0.5 至 211 μg L(-1),定量限范围在 1.5 至 704 μg L(-1)之间。所开发的方法用于测定不同样品中存在的分析物,包括茶(黑茶、白茶、绿茶)、马黛茶、咖啡、可乐软饮料和能量饮料。分析物在样品中的浓度范围为 0.4 至 314 mg L(-1)。在所有样品中,咖啡因是浓度较高的分析物。样品的植物化学特征与文献报道的一致。