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Antioxidant Activity in Supramolecular Carotenoid Complexes Favored by Nonpolar Environment and Disfavored by Hydrogen Bonding

机译:由非极性环境赞成的超分子类胡萝卜素复合物中的抗氧化活性并通过氢键残留的抗粘附性

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摘要

Carotenoids are well-known antioxidants. They have the ability to quench singlet oxygen and scavenge toxic free radicals preventing or reducing damage to living cells. We have found that carotenoids exhibit scavenging ability towards free radicals that increases nearly exponentially with increasing the carotenoid oxidation potential. With the oxidation potential being an important parameter in predicting antioxidant activity, we focus here on the different factors affecting it. This paper examines how the chain length and donor/acceptor substituents of carotenoids affect their oxidation potentials but, most importantly, presents the recent progress on the effect of polarity of the environment and orientation of the carotenoids on the oxidation potential in supramolecular complexes. The oxidation potential of a carotenoid in a nonpolar environment was found to be higher than in a polar environment. Moreover, in order to increase the photostability of the carotenoids in supramolecular complexes, a nonpolar environment is desired and the formation of hydrogen bonds should be avoided.
机译:类胡萝卜素是着名的抗氧化剂。他们有能力淬火氧气和清除有毒的自由基,预防或减少对活细胞的损害。我们发现类胡萝卜素对自由基进行清除能力,随着类胡萝卜素氧化潜力几乎呈现几乎呈指数。随着氧化潜力是预测抗氧化活性的重要参数,我们专注于影响它的不同因素。本文研究了类胡萝卜素的链条长度和供体/受体取代物如何影响其氧化潜力,但最重要的是,近期提出了近极性对类胡萝卜素对超分子复合物氧化潜力的影响的进展。发现非极性环境中的类胡萝卜素的氧化电位高于极性环境。此外,为了提高超分子复合物中的类胡萝卜素的光稳定性,需要非极性环境,并且应避免形成氢键的形成。

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