首页> 外文期刊>Molecular and Cellular Biochemistry: An International Journal for Chemical Biology >Antioxidant activity of the flaxseed lignan secoisolariciresinol diglycoside and its mammalian lignan metabolites enterodiol and enterolactone.
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Antioxidant activity of the flaxseed lignan secoisolariciresinol diglycoside and its mammalian lignan metabolites enterodiol and enterolactone.

机译:亚麻籽木脂素异豆香脂醇二糖苷及其哺乳动物木脂素代谢物肠二醇和肠内酯的抗氧化活性。

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摘要

The antioxidant activities of the flaxseed lignan secoisolariciresinol diglycoside (SDG) and its mammalian lignan metabolites, enterodiol (ED) and enterolactone (EL), were evaluated in both lipid and aqueous in vitro model systems. All three lignans significantly (p < or = 0.05) inhibited the linoleic acid peroxidation at both 10 and 100 microM over a 24-48 h of incubation at 40 degrees C. In a deoxyribose assay, which evaluates the non site-specific and site-specific Fenton reactant-induced *OH scavenging activity, SDG demonstrated the weakest activity compared to ED and EL at both 10 and 100 microM; the greatest *OH scavenging for ED and EL was observed at 100 microM in both assays. The incubation of pBR322 plasmid DNA with Fenton reagents together with SDG, ED or EL showed that the inhibition of DNA scissions was concentration dependent. The greatest non site-specific activity of lignans was at 100 microM, thus, confirming the results of the deoxyribose test. In contrast, the protective effect of SDG and EL in the site-specific assay was lost and that of ED was minimal. Therefore, the results indicate a structure-activity difference among the three lignans with respect to specific antioxidant efficacy. All three lignans did not exhibit reducing activity compared to ascorbic acid, therefore, did not possess indirect prooxidant activity related to potential changes in redox state of transition metals. The efficacy of SDG and particularly the mammalian lignans ED and EL to act as antioxidants in lipid and aqueous in vitro model systems, at relatively low concentrations (i.e. 100 microM), potentially achievable in vivo, is an evidence of a potential anticarcinogenic mechanism of flaxseed lignan SDG and its mammalian metabolites ED and EL.
机译:在脂质和水性体外模型系统中,评估了亚麻籽木脂素异豆香脂醇二糖苷(SDG)及其哺乳动物木脂素代谢产物肠二醇(ED)和肠内酯(EL)的抗氧化活性。在40摄氏度下孵育24至48小时后,所有三种木脂素均在10和100 microM上显着抑制(p <或= 0.05)亚油酸过氧化。在脱氧核糖测定中,该测定评估了非位点特异性和位点特异性特定的Fenton反应物诱导的* OH清除活性,SDG在10和100 microM时均比ED和EL弱。在两种测定中,在100 microM下观察到ED和EL的最大* OH清除率。用Fenton试剂与SDG,ED或EL一起孵育pBR322质粒DNA,表明对DNA切割的抑制是浓度依赖性的。木脂素的最大非位点特异性活性为100 microM,因此证实了脱氧核糖测试的结果。相比之下,SDG和EL在定点分析中的保护作用消失了,而ED的保护作用很小。因此,结果表明三种木脂素之间在结构抗氧化剂功效方面的差异。与抗坏血酸相比,所有三种木脂素均未表现出还原活性,因此不具有与过渡金属的氧化还原态的潜在变化相关的间接前氧化活性。 SDG尤其是哺乳动物木脂素ED和EL在相对低的浓度(即100 microM)下可在体内实现的脂质和水性体外模型系统中作为抗氧化剂的功效,是亚麻籽潜在抗癌机制的证据。 lignan SDG及其哺乳动物代谢产物ED和EL。

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