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The formation of phosphatidylcholine oxidation products by stimulated phagocytes.

机译:受刺激的吞噬细胞形成磷脂酰胆碱氧化产物。

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Phagocytic cells produce a variety of oxidants as part of the immune defence, which react readily both with proteins and lipids, and could contribute to the oxidation of low density lipoprotein in atherosclerosis. We have investigated the oxidation of phospholipid vesicles by neutrophils and mononuclear cells, to provide a model of lipid oxidation in the absence of competing protein. Phorbol 12-myristate 13-acetate-stimulated neutrophils were incubated with phospholipid vesicles containing dipalmitoyl phosphatidylcholine, palmitoyl-arachidonoyl phosphatidylcholine (PAPC) and stearoyl-oleoyl phosphatidylcholine, before extraction of the lipids for analysis by HPLC coupled to electrospray mass spectrometry. The formation of monohydroperoxides (814 m/z) and bishydroperoxides (846 m/z) of PAPC was observed. However, the major oxidized product occurred at 828 m/z,and was identified as 1-palmitoyl-2-(5,6-epoxyisoprostane E2)-sn-glycero-3-phosphocholine. These products were also formed in incubations where the neutrophils were replaced by mononuclear cells, and the amounts produced per million cells were similar. These results show that following oxidative attack by phagocytes stimulated by PMA, intact phospholipid oxidation products can be detected. The identification of an epoxyisoprostane phospholipid as the major product of phagocyte-induced phospholipid oxidation is novel, and in view of its inflammatory properties has implications for phagocyte involvement in atherogenesis.
机译:吞噬细胞产生多种氧化剂作为免疫防御的一部分,它们容易与蛋白质和脂质反应,并可能有助于动脉粥样硬化中低密度脂蛋白的氧化。我们已经研究了嗜中性粒细胞和单核细胞对磷脂囊泡的氧化作用,从而在缺乏竞争蛋白的情况下提供了脂质氧化的模型。将含有12-肉豆蔻酸13-乙酸乙酸酯刺激的嗜中性粒细胞与含有二棕榈酰磷脂酰胆碱,棕榈酰-花生四烯酰基磷脂酰胆碱(PAPC)和硬脂酰-油酰磷脂酰胆碱的磷脂囊泡一起孵育,然后通过质谱结合电喷雾质谱分析。观察到PAPC的单氢过氧化物(814 m / z)和双氢过氧化物(846 m / z)的形成。然而,主要的氧化产物发生在828 m / z,被鉴定为1-棕榈酰基-2-(5,6-环氧异前列腺素E2)-sn-甘油-3-磷酸胆碱。这些产物也是在培养中形成的,其中嗜中性粒细胞被单核细胞替代,每百万细胞产生的数量相似。这些结果表明,在PMA刺激的吞噬细胞发生氧化攻击之后,可以检测到完整的磷脂氧化产物。环氧异前列腺素磷脂作为吞噬细胞诱导的磷脂氧化的主要产物的鉴定是新颖的,并且鉴于其炎性性质,吞噬细胞参与动脉粥样硬化的发生也具有重要意义。

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