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首页> 外文期刊>Journal of Analytical Science and Technology >HPLC-CUPRAC post-column derivatization method for the determination of antioxidants: a performance comparison between porous silica and core-shell column packing
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HPLC-CUPRAC post-column derivatization method for the determination of antioxidants: a performance comparison between porous silica and core-shell column packing

机译:HPLC-CUPRAC柱后衍生化方法测定抗氧化剂:多孔硅胶和核-壳型柱填料的性能比较

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Background An HPLC method employing a post-column derivatization strategy using the cupric reducing antioxidant capacity reagent (CUPRAC reagent) for the determining antioxidants in plant-based materials leverages the separation capability of regular HPLC approaches while allowing for detection specificity for antioxidants. Methods Three different column types, namely core-shell and porous silica including two chemically different core-shell materials (namely phenyl-hexyl and C18), were evaluated to assess potential improvements that could be attained by changing from a porous silica matrix to a core-shell matrix. Tea extracts were used as sample matrices for the evaluation specifically looking at catechin and epigallocatechin gallate (EGCG). Results Both the C18 and phenyl-hexyl core-shell columns showed better performance compared to the C18 porous silica one in terms of separation, peak shape, and retention time. Among the two core-shell materials, the phenyl-hexyl column showed better resolving power compared to the C18 column. Conclusions The CUPRAC post-column derivatization method can be improved using core-shell columns and suitable for quantifying antioxidants, exemplified by catechin and EGCG, in tea samples.
机译:背景技术一种采用柱后衍生化策略的HPLC方法,使用氧化铜还原抗氧化剂能力试剂(CUPRAC试剂)来确定植物性材料中的抗氧化剂,该方法利用了常规HPLC方法的分离能力,同时允许检测抗氧化剂的特异性。方法评估了三种不同的色谱柱类型,即核-壳和多孔硅胶,其中包括两种化学上不同的核-壳材料(即苯基己基和C18),以评估通过从多孔硅胶基质变为核可实现的潜在改进-壳矩阵。茶提取物用作评估特别是儿茶素和表没食子儿茶素没食子酸酯(EGCG)的样品基质。结果C18和苯基己基核壳色谱柱在分离度,峰形和保留时间方面均比C18多孔二氧化硅色谱柱表现出更好的性能。在两种核壳材料中,与C18色谱柱相比,苯基己基色谱柱显示出更好的分离能力。结论使用核壳色谱柱可以改进CUPRAC柱后衍生化方法,适用于定量茶样品中的抗氧化剂,例如儿茶素和EGCG。

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