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Determination of Total Antioxidant Capacity by a New Spectrofluorometric Method Based on Ce(IV) Reduction: Ce(III) Fluorescence Probe for CERAC Assay

机译:基于Ce(IV)还原的新型荧光光谱法测定总抗氧化能力:Ce(III)荧光探针用于CERAC测定

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摘要

A Ce(IV)-based reducing capacity (CERAC) assay was developed to measure the total antioxidant capacity (TAC) of foods, in which Ce(IV) would selectively oxidize antioxidant compounds but not citric acid and reducing sugars which are not classified as antioxidants. The method is based on the electron-transfer (ET) reaction between Ce(IV) ion and antioxidants in optimized acidic sulphate medium (i.e., 0.3 M H2SO4 and 0.7 M Na2SO4) and subsequent determination of the produced Ce(III) ions by a fluorometric method. The fluorescent product, Ce(III), exhibited strong fluorescence at 360 nm with an excitation wavelength of 256 nm, the fluorescence intensity being correlated to antioxidant power of the original sample. The linear concentration range for most antioxidants was quite wide, e.g., 5.0 × 10−7–1.0 × 10−5 M for quercetin. The developed procedure was successfully applied to the TAC assay of antioxidant compounds such as trolox, quercetin, gallic acid, ascorbic acid, catechin, naringin, naringenin, caffeic acid, ferulic acid, glutathione, and cysteine. The proposed method was reproducible, additive in terms of TAC values of constituents of complex mixtures, and the trolox equivalent antioxidant capacities (TEAC coefficients) of the tested antioxidant compounds gave good correlations with those found by reference methods such as ABTS and CUPRAC.
机译:开发了一种基于Ce(IV)的还原能力(CERAC)测定法来测量食品的总抗氧化能力(TAC),其中Ce(IV)会选择性氧化抗氧化剂化合物,而不是柠檬酸和未分类为柠檬酸的还原糖抗氧化剂。该方法基于优化的酸性硫酸盐介质(即0.3 MH 2 SO 4 和0.7)中Ce(IV)离子与抗氧化剂之间的电子转移(ET)反应。 M Na 2 SO 4 ),然后通过荧光法测定生成的Ce(III)离子。荧光产物Ce(III)在360 nm处显示强荧光,激发波长为256 nm,荧光强度与原始样品的抗氧化能力相关。大多数抗氧化剂的线性浓度范围很宽,例如槲皮素为5.0×10 −7 –1.0×10 −5 M。所开发的方法已成功用于抗氧化剂化合物的TAC测定,如抗氧剂,槲皮素,没食子酸,抗坏血酸,儿茶素,柚皮苷,柚皮苷,咖啡酸,阿魏酸,谷胱甘肽和半胱氨酸。所提出的方法是可重现的,就复杂混合物的成分的TAC值而言是相加的,并且所测试的抗氧化剂化合物的trolox等效抗氧化剂容量(TEAC系数)与参考方法(如ABTS和CUPRAC)发现的相关性很好。

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    《Journal of Fluorescence》 |2011年第6期|p.2069-2076|共8页
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