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The Role of Plasmalogen in the Oxidative Stability of Neutral Lipids and Phospholipids

机译:血浆纤溶酶在中性脂质和磷脂的氧化稳定性中的作用

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The rale of ethanolamine plasmalogen extracted from bovine brain (BBEP) in maintaining oxidative stability of bulk soybean oil and liposome made with egg phospholipids (PL) was studied. In a purified soybean oil (PSO), the addition of 200 and 1000 ppm of BBEP promoted lipid oxidation at rates of 0.037 and 0.071 (all rates in In (PV) h~(-1) and PV stands for peroxide value), whereas soy lecithin (SL) added in the same amount showed a trend similar to the PSO blank, which had an oxidation rate of 0.025. The PSO with BBEP was susceptible to cupric ion catalyzed oxidation, in that the oil was oxidized much more quickly than the PSO with SL and cupric ion. In commercial soybean oil (CSO) with the presence of tocopherols, SL at 1000 ppm acted synergistically as an antioxidant with the natural tocopherols, but addition of BBEP accelerated lipid oxidation, as evidenced by the oxidative stability index (OSI) test. In the egg PL liposome, the BBEP caused a fast breakdown of the lipid hydroperoxides and consequently promoted more thiobarbituric acid reactive substance (TBARS) formation. The PL oxidation in the presence of copper in the liposome was not affected by the BBEP, which indicates that the hypothesis of ethanolamine plasmalogen (EthPm) chelating cupric ion as the antioxidation mechanism was not supported. The addition of cumene hydroperoxide to the egg PL liposome promoted lipid oxidation, as indicated by a fast development of PV and TBARS. However, the result with cumene hydroperoxide failed to differentiate the effect of BBEP and SL and their concentration on lipid oxidation. On the basis of the observations from this study, we conclude that EthPm is not an antioxidant but rather a pro-oxidant in a bulk lipid system, and it has no significant antioxidant effect for PL oxidation in the liposome.
机译:研究了从牛脑中提取乙醇胺缩醛缩醛(BBEP)在维持大豆油脂和蛋磷脂制成的脂质体的氧化稳定性方面的作用。在纯大豆油(PSO)中,添加200和1000 ppm的BBEP会以0.037和0.071的速率促进脂质氧化(In(PV)h〜(-1)和PV中的所有速率代表过氧化物值),而相同量添加的大豆卵磷脂(SL)表现出类似于PSO空白的趋势,氧化速率为0.025。含BBEP的PSO易受铜离子催化的氧化作用,因为油的氧化速度比含SL和铜离子的PSO快得多。在有生育酚存在的商品大豆油(CSO)中,浓度为1000 ppm的SL与天然生育酚起抗氧化剂的协同作用,但是通过氧化稳定性指数(OSI)测试证明,BBEP的加入加速了脂质的氧化。在卵PL脂质体中,BBEP引起脂质氢过氧化物的快速分解,因此促进了更多的硫代巴比妥酸反应性物质(TBARS)的形成。脂质体中铜存在下的PL氧化不受BBEP的影响,这表明不支持乙醇胺缩醛磷脂(EthPm)螯合铜离子作为抗氧化机理的假设。 PV和TBARS的快速发展表明,向鸡蛋PL脂质体中添加氢过氧化枯烯可促进脂质氧化。但是,氢过氧化枯烯的结果未能区分BBEP和SL及其浓度对脂质氧化的影响。根据这项研究的观察结果,我们得出结论,EthPm在大分子脂质系统中不是抗氧化剂,而是前氧化剂,并且对脂质体中的PL氧化没有明显的抗氧化剂作用。

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