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APPLICATION OF HIGH-PERFORMANCE LIQUID CHROMATOGRAPHY ON-LINE WITH ULTRAVIOLET/VISIBLE SPECTROSCOPY IN FOOD SCIENCE

机译:紫外/可见光谱在线高效液相色谱法在食品科学中的应用

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The aim of the present review was to describe the application of diode-array detectors for the identification of HPLC-separated chemical compounds on the basis of their UV/Vis spectra. Diotle-array detectors serve to identify compounds containing conjugated double bonds, especially aromatic compounds, and to evaluate their purity. This group of compounds includes: peptides and proteins (in that case aromatic amino acid residues are chromophores), anthocyanins and other flavonoids, other phenolic compounds, carotenoids and other dyes. The most simple strategy of interpreting UV/Vis spectra is to determine the location of absorbance maximum in zero order spectra (such a strategy is usuaity applied in dye analysis). The absorbance ratio at different wavelengths was used to identify and investigate structural changes in proteins and peptides. Chemometrical analysis of zero order spectra provides a basis for evaluating peak purity and choosing the background spectrum. Derivatives of spectra may be characterised via determination of convexity intervals, location of minima of second derivative, calculation of amplitudes of second and third derivatives or similarity indices between derivatives of individual spectra.The possibilities offered by UV/Vis spectroscopy cover, among others, discrimination between spectra of proteins with different contents of aromatic amino acids (mainly tyrosine and tryptophan), as well as discrimination between spectra of anthocyanins containing the same chro-mophore but different glycosidic moieties.
机译:本综述的目的是描述二极管阵列检测器基于其UV / Vis光谱鉴定HPLC分离的化学化合物的应用。 Diotle阵列检测器用于鉴定含有共轭双键的化合物,尤其是芳香族化合物,并评估其纯度。这组化合物包括:肽和蛋白质(在这种情况下,芳香族氨基酸残基是发色团),花色苷和其他类黄酮,其他酚类化合物,类胡萝卜素和其他染料。解释UV / Vis光谱的最简单策略是确定零级光谱中最大吸光度的位置(这种策略在染料分析中非常有用)。使用不同波长的吸光度比来鉴定和研究蛋白质和肽的结构变化。零级光谱的化学计量分析为评估峰纯度和选择背景光谱提供了基础。光谱的导数可以通过确定凸度间隔,二阶导数的最小值的位置,计算二阶和三阶导数的幅度或各个光谱的导数之间的相似性指数来表征.UV / Vis光谱学提供的可能性包括区分含有不同含量的芳香族氨基酸(主要是酪氨酸和色氨酸)的蛋白质的光谱之间的区别,以及区分具有相同色团但具有不同糖苷部分的花色苷的光谱之间的区别。

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