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脂质转运活性和脂解作用对低密度脂蛋白(LDL)氧化能力的影响:脂解产生的非酯化脂肪酸作为LDL氧化抑制剂的证据。

Effect of lipid transfer activity and lipolysis on low density lipoprotein (LDL) oxidizability: evidence for lipolysis-generated non-esterified fatty acids as inhibitors of LDL oxidation.

作者信息

Viens L, Athias A, Lizard G, Simard G, Gueldry S, Braschi S, Gambert P, Lallemant C, Lagrost L

机构信息

Laboratoire de Biochimie des Lipoprotéines, INSERM CjF 93-10, Faculté de Médecine, Dijon, France.

出版信息

J Lipid Res. 1996 Oct;37(10):2179-92.

PMID:8906595
Abstract

Low density lipoproteins (LDL) were modified in vitro in the presence of lipid transfer activity and lipolysis, which induced alterations in the size and lipid composition of LDL particles but not in their antioxidant content. Subsequently, modified LDL were oxidized with copper sulfate and the extent of LDL oxidation was evaluated. Lipid transfer activity alone, or in combination with lipolysis, led to a significant reduction of LDL oxidability as compared with starting homologous LDL. Furthermore, the combined effect of lipid transfers and lipolysis reduced LDL oxidability to a significantly greater extent than did lipid transfers alone. Consistent results were obtained by measuring either the formation of lipid peroxides, the appearance of thiobarbituric acid reactive substances (TBARS), the disappearance of polyunsaturated fatty acids (PUFA), or the generation of cholesterol oxides. Non-esterified fatty acids (NEFA) arose as putative candidates in reducing oxidation susceptibility of LDL: NEFA-containing LDL were less oxidizable; the enrichment of LDL with either oleic acid or linoleic acid reduced significantly their oxidability; the oxidation susceptibility of either in vitro modified LDL or LDL isolated from normal or analbuminemic patients significantly increased after reduction of their NEFA content with fatty acid-poor albumin. After NEFA depletion, small-sized LDL resulting from the combined effects of lipid transfer and triglyceride hydrolysis activities became more oxidizable than large-sized LDL treated with lipid transfer activity alone. In addition, the PUFA to total fatty acid ratio and the oxidability of modified LDL varied accordingly after NEFA depletion, showing that in the present study not only lipoprotein-bound NEFA but also the total fatty acid composition of LDL could account for alterations in their oxidability.

摘要

低密度脂蛋白(LDL)在脂质转移活性和脂解作用存在的情况下进行体外修饰,这会引起LDL颗粒大小和脂质组成的改变,但不会改变其抗氧化剂含量。随后,用硫酸铜将修饰后的LDL氧化,并评估LDL的氧化程度。与起始的同源LDL相比,单独的脂质转移活性或与脂解作用相结合,都会导致LDL氧化能力显著降低。此外,脂质转移和脂解的联合作用比单独的脂质转移更能显著降低LDL的氧化能力。通过测量脂质过氧化物的形成、硫代巴比妥酸反应性物质(TBARS)的出现、多不饱和脂肪酸(PUFA)的消失或胆固醇氧化物的生成,均得到了一致的结果。非酯化脂肪酸(NEFA)被认为是降低LDL氧化敏感性的候选物质:含有NEFA的LDL更不易被氧化;用油酸或亚油酸富集LDL可显著降低其氧化能力;用低脂肪酸白蛋白降低体外修饰的LDL或从正常或无白蛋白血症患者中分离的LDL的NEFA含量后,其氧化敏感性显著增加。在NEFA耗尽后,脂质转移和甘油三酯水解活性联合作用产生的小尺寸LDL比仅用脂质转移活性处理的大尺寸LDL更易被氧化。此外,在NEFA耗尽后,修饰后LDL的PUFA与总脂肪酸的比例和氧化能力相应变化,表明在本研究中,不仅脂蛋白结合的NEFA,而且LDL的总脂肪酸组成都可以解释其氧化能力的改变。

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