Institute for Organic Synthesis and Photoreactivity (ISOF), National Research Council of Italy (CNR), Bologna, Italy.
Department of Chemistry "G. Ciamician", University of Bologna, Bologna, Italy.
Free Radic Res. 2023 Feb;57(2):115-129. doi: 10.1080/10715762.2023.2212121. Epub 2023 May 21.
This review highlights the progress made in recent years in harnessing the peculiar chemistry of the hydroperoxyl, or perhydroxyl, radical (HOO) during lipid peroxidation, particularly with regard to its interaction with antioxidants. The HOO radical, the protonated form of superoxide, plays an important role in the propagation and termination of lipid peroxidation in nonaqueous systems. However, differently from alkylperoxyl (ROO) radicals that have only oxidizing ability, HOO has a two-faced oxidizing and reducing activity. The HOO radical can reduce the radical of the antioxidant (phenols and aromatic amines) by H-atom transfer (A + HOO ⟶ AH + O) thus increasing the length of the inhibition period and the effectiveness of the antioxidant. The simultaneous presence of HOO and ROO radicals triggers the catalytic antioxidant activity of quinones and nitroxides and explains the antioxidant activity of melanin-like polymers. The HOO radical can be formed by fragmentation of ROO radicals deriving from amines, alcohols, substituted alkenes and may be present at low concentrations in many oxidizing systems. Pro-aromatic compounds, like the natural essential oil component γ-terpinene, are the most effective sources of HOO and behave as co-antioxidants in the presence of nitroxides or quinones. The future developments and applications of HOO chemistry in the context of the inhibition of autoxidation are also discussed.
这篇综述重点介绍了近年来在利用脂质过氧化过程中过氧羟自由基(HOO)的特殊化学性质方面所取得的进展,特别是其与抗氧化剂相互作用方面的进展。HOO 自由基是超氧阴离子的质子化形式,在非水体系中脂质过氧化的引发和终止过程中发挥着重要作用。然而,与仅具有氧化能力的烷过氧自由基(ROO)不同,HOO 具有两面性的氧化还原活性。HOO 自由基可以通过 H 原子转移(A + HOO ⟶ AH + O)将抗氧化剂的自由基(酚类和芳香胺)还原,从而延长抑制期并提高抗氧化剂的效率。HOO 和 ROO 自由基的同时存在会引发醌类和氮氧自由基的催化抗氧化活性,并解释了类似于黑色素的聚合物的抗氧化活性。HOO 自由基可以通过胺、醇、取代烯烃的 ROO 自由基的断链形成,并且可能在许多氧化体系中以低浓度存在。前芳香族化合物,如天然精油成分γ-萜品烯,是 HOO 的最有效来源,并且在氮氧自由基或醌类存在下表现为共抗氧化剂。本文还讨论了 HOO 化学在抑制自动氧化方面的未来发展和应用。