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类胡萝卜素的抗氧化活性:β-胡萝卜素和叶黄素与化学体系中产生的自由基相互作用的电子自旋共振研究

Antioxidant activity of carotenoids: an electron-spin resonance study on beta-carotene and lutein interaction with free radicals generated in a chemical system.

作者信息

Iannone A, Rota C, Bergamini S, Tomasi A, Canfield L M

机构信息

Department of Biomedical Sciences, University of Modena, Italy.

出版信息

J Biochem Mol Toxicol. 1998;12(5):299-304. doi: 10.1002/(sici)1099-0461(1998)12:5<299::aid-jbt6>3.0.co;2-g.

Abstract

beta-Carotene is thought to be a chain-breaking antioxidant, even though we have no information about the mechanism of its antioxidant activity. Using electron-spin resonance (ESR) spectroscopy coupled to the spin-trapping technique, we have studied the effect of beta-carotene and lutein on the radical adducts of the spin-trap PBN (N-t-butyl-alpha-phenylnitrone) generated by the metal-ion breakdown of different tert-butyl hydroperoxide (tBOOH) concentrations in methylene chloride. The peroxyl radical, along with an oxidation product of PBN (the PBNOx), trapped at room temperature from the breakdown of high concentration of tBOOH (1 M), were quenched by beta-carotene or lutein, in competition with the spin-trapping agent. However, carotenoids were not able to quench the alkoxyl and methyl radicals generated in the reaction carried out in the presence of low tBOOH concentration (1 mM). The reaction between carotenoids and the peroxyl radical was also carried out in the absence of the spin trap, at 77 K: Under these different experimental conditions, we did not detect any radical species deriving from carotenoids. In the same system, a further evidence of the peroxyl radical quenching by beta-carotene and lutein was obtained. The antioxidant activity of vitamin E was also tested, for comparison with the carotenoids. In the presence of alpha-tocopherol, peroxyl and alkoxyl radicals were quenched, and the tocopheroxyl radical was detected. Our data provide the first direct evidence that carotenoids quench peroxyl radicals. Under our experimental conditions, we did not detect any carotenoid radical species that could derive from the interaction with the peroxyl radical. The radical-trapping activity of beta-carotene and lutein demonstrated in this chemical reaction contributes to our understanding carotenoid antioxidant action in biological systems.

摘要

β-胡萝卜素被认为是一种断链抗氧化剂,尽管我们对其抗氧化活性的机制并不了解。利用电子自旋共振(ESR)光谱结合自旋捕集技术,我们研究了β-胡萝卜素和叶黄素对在二氯甲烷中不同浓度叔丁基过氧化氢(tBOOH)发生金属离子分解所产生的自旋捕集剂PBN(N-叔丁基-α-苯基硝酮)的自由基加合物的影响。在室温下,高浓度tBOOH(1M)分解产生的过氧自由基以及PBN的一种氧化产物(PBNOx),会被β-胡萝卜素或叶黄素淬灭,且与自旋捕集剂形成竞争。然而,类胡萝卜素无法淬灭在低浓度tBOOH(1mM)存在下反应所产生的烷氧基和甲基自由基。类胡萝卜素与过氧自由基之间的反应也在无自旋捕集剂的情况下于77K进行:在这些不同的实验条件下,我们未检测到任何源自类胡萝卜素的自由基物种。在同一体系中,还获得了β-胡萝卜素和叶黄素淬灭过氧自由基的进一步证据。为了与类胡萝卜素进行比较,还测试了维生素E的抗氧化活性。在α-生育酚存在的情况下,过氧自由基和烷氧基自由基被淬灭,并检测到了生育酚氧自由基。我们的数据首次直接证明了类胡萝卜素能淬灭过氧自由基。在我们的实验条件下,未检测到任何可能源自与过氧自由基相互作用的类胡萝卜素自由基物种。在该化学反应中所证明的β-胡萝卜素和叶黄素的自由基捕集活性,有助于我们理解类胡萝卜素在生物系统中的抗氧化作用。

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