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HDL enhances oxidation of LDL in vitro in both men and women

机译:高密度脂蛋白增强男女体内低密度脂蛋白的氧化

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Background Oxidative modification of low-density lipoprotein (LDL) is a key event in the oxidation hypothesis of atherogenesis. Some in vitro experiments have previously suggested that high-density lipoprotein (HDL) co-incubated with LDL prevents Cu2+-induced oxidation of LDL, while some other studies have observed an opposite effect. To comprehensively clarify the role of HDL in this context, we isolated LDL, HDL2 and HDL3 from sera of 61 free-living individuals (33 women and 28 men). Results When the isolated LDL was subjected to Cu2+-induced oxidation, both HDL2 and HDL3 particles increased the rate of appearance and the final concentration of conjugated dienes similarly in both genders. Oxidation rate was positively associated with polyunsaturated fatty acid content of the lipoproteins in that it was positively related to the content of linoleate and negatively related to oleate. More saturated fats thus protected the lipoproteins from damage. Conclusion We conclude that in vitro HDL does not protect LDL from oxidation, but is in fact oxidized fastest of all lipoproteins due to its fatty acid composition, which is oxidation promoting.
机译:背景低密度脂蛋白(LDL)的氧化修饰是动脉粥样硬化氧化假设中的关键事件。以前的一些体外实验表明,与LDL共孵育的高密度脂蛋白(HDL)可以防止Cu2 +诱导的LDL氧化,而其他一些研究则观察到相反的作用。为了全面阐明HDL在这种情况下的作用,我们从61名自由生活者(33名女性和28名男性)的血清中分离了LDL,HDL2和HDL3。结果当分离的LDL受到Cu2 +诱导的氧化作用时,两种性别的HDL2和HDL3颗粒均增加了共轭二烯的出现速率和最终浓度。氧化速率与脂蛋白的多不饱和脂肪酸含量成正相关,因为它与亚油酸酯含量成正相关,与油酸酯含量成负相关。因此,更多的饱和脂肪可以保护脂蛋白不受损害。结论我们得出的结论是,体外HDL不能保护LDL免受氧化,但实际上,由于其脂肪酸组成具有促进氧化作用,因此它是所有脂蛋白中氧化最快的。

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