ANTIOXIDANT PROPERTIES OF THE DIHYDROQUERCETIN WITH ALPHA-TOCOPHEROL COMBINATIONS IN FREE RADICAL OXIDATION

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Abstract

Introduction. A significant factor in the manifestation of the compound antioxidant ability is a pattern of its interaction with other antioxidants, which affects the demonstrated final antioxidant effect. Flavonoids display different antioxidant capacities along with a wide range of biological activity, dihydroquercetin in particular. The role of the regenerating component in the cycles of mutual transformations in antioxidant systems is assumed for dihydroquercetin as it's a compound with a high profile of antiradical capacity. Here we focused on the nature of the antioxidant activity presentation in a composition consisting of dihydroquercetin and the essential antioxidant α-tocopherol. The combination was studied in a wide ratio range of the dihydroquercetin-α-tocopherol composition components from 1:1 to 1:20, based on the assumption that the concentration of the second component in living systems is excessive. Aim. The work aimed to determine the nature of the dihydroquercetin-α-tocopherol composition antioxidant activity in vitro, both in general and in terms of the individual component’s action. Material and methods. The antioxidant effects of the composition were studied within the framework of decolorization and kinetic methods based on the inhibition of model radical cations of 2,2'-azino-bis-(3-ethylbenzthiosoline-6-sulfonic acid) diammonium salt. To determine the nature of the individual components' action, high-resolution mass spectrometry was used, based on the analysis of the spectra of which kinetic curves of the consumption of the components of the composition were constructed. Results. A study of the interaction of dihydroquercetin with α-tocopherol by the decolorization method showed that a slight subadditive effect was observed for all ratios of the components of the compositions. The kinetic method revealed a two-stage nature of the antioxidant activity manifestation of the composition, with the first stage of the induction period being attributed to the α–tocopherol action, and the second to dihydroquercetin. In support of the hypothesis expressed, it was shown by high-resolution mass spectrometry that a decrease in the concentration of dihydroquercetin in the composition begins only after almost complete α-tocopherol consumption. Conclusions. α-Tocopherol prevents the oxidation of dihydroquercetin by radical cations ABTS•+ when acting together in the composition, and regeneration of one antioxidant by another does not occur.
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二氢槲皮素与α-生育酚组合在自由基氧化中的抗氧化特性
导言。体现化合物抗氧化能力的一个重要因素是其与其他抗氧化剂的相互作用模式,这种模式会影响最终抗氧化效果的显现。类黄酮具有不同的抗氧化能力和广泛的生物活性,尤其是二氢槲皮素。由于二氢槲皮素是一种抗自由基能力很强的化合物,因此在抗氧化系统的相互转化循环中,它扮演着再生成分的角色。在这里,我们重点研究了由双氢槲皮素和必需抗氧化剂 α-生育酚组成的组合物所呈现的抗氧化活性的性质。在二氢槲皮素-α-生育酚组成成分的比例范围从 1:1 到 1:20 较宽的情况下,对这种组合进行了研究,所依据的假设是生命系统中第二种成分的浓度过高。这项研究旨在确定二氢槲皮素-α-生育酚组合物体外抗氧化活性的性质,包括总体性质和单个成分的作用性质。根据 2,2'-偶氮-双(3-乙基苯硫代啉-6-磺酸)二铵盐对模型自由基阳离子的抑制作用,在脱色和动力学方法的框架内研究了组合物的抗氧化效果。为了确定单个成分作用的性质,使用了高分辨率质谱仪,根据对光谱的分析,构建了组合物成分消耗的动力学曲线。脱色法研究了二氢槲皮素与α-生育酚的相互作用,结果表明,在组合物各组分的所有比例下,都能观察到轻微的次叠加效应。动力学方法显示,组合物的抗氧化活性表现分为两个阶段,诱导期的第一阶段归因于 α-生育酚的作用,第二阶段归因于二氢槲皮素。高分辨率质谱分析表明,只有在α-生育酚几乎完全消耗后,成分中二氢槲皮素的浓度才开始下降,从而支持了上述假设。α-生育酚在成分中共同作用时,可防止自由基阳离子 ABTS-+ 对二氢槲皮素的氧化,而且一种抗氧化剂不会被另一种抗氧化剂再生。
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