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Chromatographic analysis of diverse fruit components using HPLC and UPLC

机译:使用HPLC和UPLC色谱分析各种水果成分

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The nutritional properties of fruits are due to the combined action of many categories of molecules. Studies on molecular nutrition, therefore, requires analytical methods that can cope with diverse molecular groups, including metabolites that may be currently unknown. Fractionation and identification protocols are crucial to validate identified compounds, and can be adapted from methodologies developed for metabolome studies. Pectin-related problems during fractionation of samples from ripe fruit products, both undigested and after digestion, as well as samples from in vitro cell culture bioassay were addressed, and chromatographic separations of target compounds (carotenoids, phenolics, sugars, and organic acids) were developed based on RP chromatography using HPLC and UPLC systems. The final method comprised of a chloroform–methanol–water (2?:?1?:?3) extraction to simultaneously extract as many polar and nonpolar compounds as possible, followed by chromatographic analysis using (a) a HPLC-ELSD-UV system with a Prevail Carbohydrate column for sugar analysis, (b) Prevail Organic Acid column for organic acid analysis, (c) LC-MS ESI of eluants from a XTerra C-18 column for phenolics and (d) UPLC-PDA systems in a C-18-Bridged Ethane in Hybrid matrix column for carotenoids and other hydrophobic components. Acetonitrile-based mobile phases can be used to run all chromatographic systems developed...
机译:水果的营养特性归因于许多种类分子的共同作用。因此,对分子营养学的研究需要能够应对多种分子组的分析方法,包括目前尚不知道的代谢物。分馏和鉴定方案对于验证鉴定出的化合物至关重要,可以根据为代谢组学研究开发的方法进行调整。解决了未消化和消化后的成熟水果产品样品分离中以及体外细胞培养生物测定样品中与果胶有关的问题,目标化合物(类胡萝卜素,酚类,糖和有机酸)的色谱分离得到了解决。根据使用HPLC和UPLC系统的RP色谱法开发。最终方法包括氯仿-甲醇-水(2?:?1?:?3)萃取,以同时萃取尽可能多的极性和非极性化合物,然后使用(a)HPLC-ELSD-UV系统进行色谱分析配有用于糖分析的Prevail碳水化合物色谱柱,(b)用于有机酸分析的Prevail Organic Acid色谱柱,(c)XTerra C-18色谱柱的洗脱液的LC-MS ESI用于酚醛分析和(d)C中的UPLC-PDA系统杂化基质柱中的-18桥接乙烷,用于类胡萝卜素和其他疏水性组分。基于乙腈的流动相可用于运行所有开发的色谱系统。

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