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首页> 外文期刊>American Journal of Physiology >Mechanisms involved in the protective effect of estradiol-17beta on lipid peroxidation and DNA damage.
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Mechanisms involved in the protective effect of estradiol-17beta on lipid peroxidation and DNA damage.

机译:参与雌二醇-17β对脂质过氧化和DNA损伤的保护作用的机制。

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摘要

Previous studies from our laboratory have shown that estrogens can protect against lipoprotein peroxidation and DNA damage. In this study, the mechanism of estradiol-17beta (E2) action was investigated by comparing E2 with selective scavengers of reactive oxygen species (ROS) in terms of inhibition of 1) human low-density lipoprotein (LDL) peroxidation (measured by the diene conjugation method) and 2) DNA damage (measured by the formation of strand breaks in supercoiled OX-174 RFI DNA). In addition, the direct effect of E2 on the generation of individual ROS was also measured. By use of ROS scavengers, it was determined that lipoprotein peroxidation was predominantly due to superoxide (39%), with some contributions from hydrogen peroxide (23%) and peroxy (38%) radicals. E2 was a more effective inhibitor of peroxidation than all the ROS scavengers combined. In DNA damage, scavengers of hydrogen peroxide, hydroxyl, and superoxide radical offered significant protection (49-65%). E2 alone offered a similar degree of protection, and no additional effect was evident when it was combined with ROS scavengers. E2 caused a significant reduction (37%) in the production of superoxide radical by bovine heart endothelial cells in culture but had no effect on the formation of either hydrogen peroxide or hydroxyl radicals. These studies show that 1) the protection offered by E2 in terms of lipid peroxidation could be due to its ability to inhibit generation of superoxide radical and prevent further chain propagation, and 2) in DNA damage protection, E2 mainly appears to inhibit chain propagation.
机译:我们实验室的先前研究表明,雌激素可以防止脂蛋白过氧化和DNA损伤。在这项研究中,通过比较E2和活性氧(ROS)的选择性清除剂在抑制1)人类低密度脂蛋白(LDL)过氧化(通过二烯测量)方面研究了雌二醇17β(E2)作用的机制。结合方法)和2)DNA损伤(通过超螺旋OX-174 RFI DNA中链断裂的形成来衡量)。此外,还测量了E2对单个ROS生成的直接影响。通过使用ROS清除剂,可以确定脂蛋白的过氧化作用主要归因于超氧化物(39%),其中过氧化氢(23%)和过氧(38%)自由基有一定作用。 E2是比所有ROS清道夫组合起来更有效的过氧化抑制剂。在DNA损伤中,过氧化氢,羟基和超氧化物自由基的清除剂提供了显着的保护作用(49-65%)。单独的E2可以提供类似程度的保护,当与ROS清除剂组合使用时,没有发现其他效果。 E2导致培养的牛心脏内皮细胞产生的超氧化物自由基显着减少(37%),但对过氧化氢或羟基自由基的形成没有影响。这些研究表明:1)E2在脂质过氧化方面提供的保护可能是由于其抑制超氧化物自由基的产生并阻止进一步的链传播的能力,以及2)在DNA损伤保护中,E2主要表现为抑制链的传播。

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