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非共价相互作用对酚类抗氧化活性的调节。

Modulation of the antioxidant activity of phenols by non-covalent interactions.

机构信息

Department of Organic Chemistry A. Mangini, University of Bologna, Via San Giacomo 11, 40126, Bologna, Italy.

出版信息

Org Biomol Chem. 2012 Jun 7;10(21):4147-58. doi: 10.1039/c2ob25174d. Epub 2012 Apr 16.

Abstract

Non-covalent (H-bonding) interactions, either intramolecular or with the surrounding medium, have a major influence on the activity of natural and synthetic phenolic antioxidants, due to the modulation of their reactivity with radical species, such as peroxyl radicals. Different cases can be distinguished. (i) Intra- or inter-molecular H-bonding involving the reactive -OH moiety will depress the antioxidant activity if the -OH acts as H-bond donor, while the opposite will generally occur if it acts as H-bond acceptor. (ii) Remote intra- and inter-molecular H-bonding, involving a distant -OH group (in polyphenols) or a ring substituent, may increase or decrease the reactivity of an antioxidant toward free radicals, depending on whether the stabilization produced by the H-bond increases or decreases along the reaction coordinate, on proceeding from reactants to the transition state. In this Perspective, the role of non-covalent interactions in the complex chemistry of natural polyphenolic antioxidants is discussed with the aid of literature data on simplified model compounds, aiming at the composition of a clear picture that might guide future research.

摘要

非共价(氢键)相互作用,无论是分子内的还是与周围介质的,都会对天然和合成酚类抗氧化剂的活性产生重大影响,这是由于它们与自由基(如过氧自由基)的反应性的调节。可以区分不同的情况。(i)涉及反应性-OH 部分的分子内或分子间氢键如果-OH 作为氢键供体,则会抑制抗氧化活性,而如果-OH 作为氢键受体,则通常会发生相反的情况。(ii)远程分子内和分子间氢键,涉及一个较远的-OH 基团(在多酚中)或一个环取代基,可能会增加或降低抗氧化剂对自由基的反应性,具体取决于氢键产生的稳定化作用沿着反应坐标增加还是减少,从反应物到过渡态。在这篇观点文章中,借助简化模型化合物的文献数据,讨论了非共价相互作用在天然多酚类抗氧化剂复杂化学中的作用,旨在形成一个清晰的图景,指导未来的研究。

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