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FT-IR-based method for rutin quercetin and quercitrin quantification in different buckwheat (Fagopyrum) species

机译:基于FT-IR的荞麦中芦丁槲皮素和槲皮素定量方法

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摘要

The present study explores an alternative method for antioxidants determination in buckwheat (Fagopyrum) samples. Buckwheat contains different amounts of the antioxidants rutin, quercetin and quercitrin in different plant parts. Buckwheat seeds are most commonly used as food; however, preparations from the herb can also be used as a rich source of rutin. Infrared spectroscopy was used for individual and sum quantification of rutin, quercetin and quercitrin in whole and ground flowers and leaves of seven different buckwheat species. Correlation coefficients R of calibration and independent validation set for rutin, quercetin and quercitrin were 1.00 and 0.98, 0.94 and 0.99, 0.99 and 0.95, respectively. Some of the developed models had accuracy comparable to the reference HPLC method. Additionally many different parameters that give an important insight into the FTIR technique are discussed (different plant parts, whole and ground untreated samples, 3 different resolutions, 7 spectra pre-treatments, using individual or averaged spectra, reducing spectral data input, considering additional non-spectral data). The implemented technique used no sample preparation, is non-destructive and uses very little amounts of sample. Result show that infrared spectroscopy can be a fast and environmentally friendly alternative technique for routine analysis of main flavonoids in aerial parts of buckwheat.
机译:本研究探索了荞麦样品中抗氧化剂含量测定的另一种方法。荞麦在植物的不同部位中含有不同量的抗氧化剂芦丁,槲皮素和槲皮素。荞麦种子最常用作食物;但是,这种草药的制剂也可以用作芦丁的丰富来源。红外光谱法用于对7种不同荞麦的整花和地上花和叶中的芦丁,槲皮素和槲皮素进行单个和总定量分析。芦丁,槲皮素和槲皮素的校正和独立验证集的相关系数R分别为1.00和0.98、0.94和0.99、0.99和0.95。一些开发的模型具有与参考HPLC方法相当的准确性。此外,还讨论了对FTIR技术有重要了解的许多不同参数(不同的植物部位,未处理的整个样品和地面样品,3种不同的分辨率,7种光谱预处理,使用单个或平均光谱,减少光谱数据输入,并考虑了其他非-光谱数据)。实施的技术无需样品制备,无损且样品量很少。结果表明,红外光谱法可以作为一种快速,环保的替代技术,用于常规分析荞麦地上部分的主要黄酮类成分。

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