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Sensitivity enhancement of CUPRAC and iron(Ⅲ)-phenanthroline antioxidant assays by preconcentration of colored reaction products on a weakly acidic cation exchanger

机译:通过在弱酸性阳离子交换剂上预浓缩有色反应产物,可提高CUPRAC和铁(Ⅲ)-菲咯啉抗氧化剂的灵敏度

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The chemical diversity of antioxidants (acting as non-enzymatic defenses of an organism to oxidative stress) makes it difficult to separate and quantify antioxidants from the vegetable matrix. We report the development of simple and widely applicable total antioxidant capacity (TAC) assays of increased sensitivity quantitating dietary polyphenols, vitamins C and E from dilute solutions utilizing the copper(Ⅱ)-neocuproine (Cu(Ⅱ)-Nc) and iron(Ⅲ)-phenanthroline (Fe(Ⅲ)-phen) reagents as chromogenic oxidants. The sensitivities of the CUPRAC (cupric ion reducing antioxidant capacity) method for TAC, and of Fe(Ⅲ)-phen method for ascorbic acid assays were enhanced by preconcentration of colored species derived from the redox reaction of chromogenic oxidant with the tested antioxidant. The proposed method was useful in concentrating the colored cations derived from the antioxidant values of dilute solutions where ordinary TAC assays gave negligible absorbances. When an antioxidant reduced the chromogenic reagents Cu(Ⅱ)-Nc or Fe(Ⅲ)-phen, the resulting large cations of Cu(Nc)_2~+ and Fe(phen)_3~(2+) were selectively retained by a weakly acidic cation exchanger Amberlite IRC-50 resin in Na~+-form. The ferrous-phenanthroline and cuprous-neocuproine cations were retained at pH 6 and 7, respectively, on IRC-50 resin. The resin-retained species were eluted with (1:1 (v/v) EtOH - 1 M aqueous HC1) and (1:1 (v/v) EtOH + 1 M aqueous HCIO4) solutions, respectively, for ferrous and cuprous species, yielding preconcentration factors between 5 and 10. The Fe(phen)_3~(2+)-containing eluate was adjusted to pH 6 and its absorbance measured at 510 nm, while the absorbance of the Cu(Nc)_2~+-containing eluate was directly measured at 450 nm. The proposed assays were rapid, and the formed complexes were stable. Preconcentration of antioxidant solutions by the proposed 'sorption-spectrophotometry' increased analytical sensitivity.
机译:抗氧化剂的化学多样性(作为生物体对氧化应激的非酶促防御)使得难以从植物基质中分离和定量抗氧化剂。我们报告了一种简单且可广泛应用的总抗氧化剂能力(TAC)分析方法的开发,该方法可提高利用铜(Ⅱ)-新铜(Cu(Ⅱ)-Nc)和铁(Ⅲ)从稀溶液中定量测定膳食多酚,维生素C和E的灵敏度菲咯啉(Fe(Ⅲ)-phen)试剂作为发色氧化剂。通过预浓缩发色氧化剂与测试抗氧化剂的氧化还原反应衍生的有色物质,可提高CUPRAC(降低铜离子的抗氧化剂容量)方法对TAC的敏感性以及Fe(Ⅲ)-phen方法对抗坏血酸的敏感性。所提出的方法可用于浓缩源自稀溶液的抗氧化剂值的有色阳离子,而普通的TAC测定的吸光度可忽略不计。当抗氧化剂还原生色剂Cu(Ⅱ)-Nc或Fe(Ⅲ)-phen时,Cu(Nc)_2〜+和Fe(phen)_3〜(2+)的大阳离子被弱离子选择性保留。 Na〜+型酸性阳离子交换剂Amberlite IRC-50树脂。亚铁-菲咯啉和新铜亚铜阳离子分别保留在IRC-50树脂上的pH值为6和7。对于亚铁种类和亚铜种类,分别用(1:1(v / v)EtOH-1 M HCl水溶液)和(1:1(v / v)EtOH + 1 M HCIO4水溶液)洗脱树脂保留的物质。 ,得到的预浓缩因子在5到10之间。将含Fe(phen)_3〜(2+)的洗脱液的pH值调整为6,并在510 nm处测量吸光度,而含Cu(Nc)_2〜+的吸光度洗脱液直接在450 nm处测量。所提出的测定是快速的,并且形成的复合物是稳定的。通过提出的“吸附分光光度法”对抗氧化剂溶液进行预浓缩可提高分析灵敏度。

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