首页> 美国卫生研究院文献>International Journal of Environmental Research and Public Health >Fenton Reaction-Induced Oxidative Damage to Membrane Lipids and Protective Effects of 17β-Estradiol in Porcine Ovary and Thyroid Homogenates
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Fenton Reaction-Induced Oxidative Damage to Membrane Lipids and Protective Effects of 17β-Estradiol in Porcine Ovary and Thyroid Homogenates

机译:芬顿反应诱导对植物卵巢中17β-雌二醇的膜脂质和保护作用的氧化损伤和甲状腺致甲状腺素

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摘要

The Fenton reaction (Fe2++H2O2→Fe3++•OH+OH-) results in strong oxidative damage to macromolecules when iron (Fe) or hydrogen peroxide (H2O2) are in excess. This study aims at comparing Fe2++H2O2-induced oxidative damage to membrane lipids (lipid peroxidation, LPO) and protective effects of 17β-estradiol (a potential antioxidant) in porcine ovary and thyroid homogenates. Iron, as one of the Fenton reaction substrates, was used in the highest achievable concentrations. Thyroid or ovary homogenates were incubated in the presence of: (1st) FeSO4+H2O2 with/without 17β-estradiol (1 mM; 100, 10.0, 1.0 µM; 100, 10.0, 1.0 nM; 100, 10.0, 1.0 pM); five experiments were performed with different FeSO4 concentrations (2400, 1200, 600, 300, 150 µM); (2nd) FeSO4 (2400, 1200, 600, 300, 150 µM)+H2O2 with/without 17β-estradiol; three experiments were performed with three highest 17β-estradiol concentrations; (3rd) FeSO4 (2400, 1200, 1100, 1000, 900, 800, 700, 600, 300, 150, 75 µM)+H2O2 (5 mM). LPO level [MDA+4-HDA/mg protein] was measured spectrophotometrically. The basal LPO level is lower in ovary than in thyroid homogenates. However, experimentally-induced LPO was higher in the former tissue, which was confirmed for the three highest Fe2+ concentrations (2400, 1200, 1100 µM). Exogenous 17β-estradiol (1 mM, 100, and 10 µM) reduced experimentally-induced LPO independently of iron concentration and that protective effect did not differ between tissues. The ovary, compared to the thyroid, reveals higher sensitivity to prooxidative effects of iron, however, it showed similar responsivity to protective 17β-estradiol activity. The therapeutic effect of 17β-estradiol against iron overload consequences should be considered with relation to both tissues.
机译:芬顿反应(Fe2 ++ H2O2→Fe3 ++•OH + OH-)导致当铁(Fe)或过氧化氢(H2O2)过量时对大分子的强氧化损伤。该研究旨在将Fe2 ++ H2O2诱导的氧化损伤与膜脂质(脂质过氧化,LPO)和17β-雌二醇(潜在抗氧化剂)中的保护作用进行比较,猪卵巢和甲状腺均匀素。铁,作为芬顿反应底物之一,以最高可实现的浓度使用。甲状腺或卵巢匀浆在以下存在下:(1st)FeSO4 + H 2 O 2与/不含17β-雌二醇(1mm;100,10.0,10μm; 100,10.0,10nm; 100,10.0,101m);用不同的FeSO 4浓度(2400,1200,600,300,150μm)进行五个实验; (2ND)FeSO4(2400,1200,600,300,150μm)+ H2O2,具有/无17β-雌二醇;进行三个最高的17β-雌二醇浓度进行三个实验; (3rd)FeSO4(2400,1200,1100,000,900,800,700,600,300,150,75μm)+ H2O2(5mm)。 LPO水平[MDA + 4-HDA / mg蛋白质]分光光度测量。基底LPO水平低于甲状腺匀浆的卵巢。然而,前一种组织中的实验诱导的LPO在3个最高Fe2 +浓度(2400,1200,1100μm)中确认。外源17β-雌二醇(1mm,100和10μm),实验诱导的LPO独立于铁浓度,并且组织之间的保护作用没有差异。与甲状腺相比,卵巢揭示了对铁的引体效果更高的敏感性,然而,它表明对保护性17β-雌二醇活性的相似反应性。 17β-雌二醇对两种组织的关系,应考虑17β-雌二醇的治疗效果。

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