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α-生育酚对低密度脂蛋白氧化和糖基化的影响:体外和体内研究

Effect of alpha-tocopherol on LDL oxidation and glycation: in vitro and in vivo studies.

作者信息

Li D, Devaraj S, Fuller C, Bucala R, Jialal I

机构信息

Department of Internal Medicine, University of Texas Southwestern Medical Center, Dallas 75235, USA.

出版信息

J Lipid Res. 1996 Sep;37(9):1978-86.

PMID:8895064
Abstract

Much data support a role for both low density lipoprotein (LDL) oxidation and glycation in atherogenesis. While alpha-tocopherol decreases the oxidative susceptibility of LDL, its role in decreasing LDL glycation is unclear. Hence we tested the effect of alpha-tocopherol both in vitro and in vivo on LDL oxidation and glycation. LDL was isolated after enrichment of plasma with alpha-tocopherol. This resulted in a 2-fold increase in alpha-tocopherol in LDL (AT-LDL). During a 6-day incubation of control LDL (C-LDL) and AT-LDL with 25 mM glucose, there were no significant differences in the degree of glycation on days 1, 3, and 6. Also, apoB advanced glycosylation end product levels were not significantly different between C-LDL and AT-LDL. There was a progressive increase in the susceptibility of LDL to oxidation with increasing LDL glycation as evidenced by reduced lag time of copper-catalyzed LDL oxidation. However, AT-LDL was more resistant to copper-catalyzed oxidation. Similar findings were observed when the LDLs were incubated with endothelial cells. The data from the alpha-tocopherol supplementation study confirmed our in vitro findings that alpha-tocopherol significantly decreases oxidative susceptibility of LDL, but does not affect its glycation. Therefore, while glycation increases LDL oxidative susceptibility, alpha-tocopherol decreases the oxidation of glycated LDL but not LDL glycation.

摘要

大量数据支持低密度脂蛋白(LDL)氧化和糖基化在动脉粥样硬化形成过程中均发挥作用。虽然α-生育酚可降低LDL的氧化易感性,但其在降低LDL糖基化方面的作用尚不清楚。因此,我们在体外和体内测试了α-生育酚对LDL氧化和糖基化的影响。在用α-生育酚富集血浆后分离LDL。这导致LDL中α-生育酚增加了2倍(α-生育酚-LDL,AT-LDL)。在对照LDL(C-LDL)和AT-LDL与25 mM葡萄糖孵育6天的过程中,第1、3和6天的糖基化程度没有显著差异。此外,C-LDL和AT-LDL之间载脂蛋白B晚期糖基化终产物水平也没有显著差异。随着LDL糖基化增加,LDL对氧化的易感性逐渐增加,这可通过铜催化的LDL氧化的延迟时间缩短得到证明。然而,AT-LDL对铜催化的氧化更具抗性。当LDL与内皮细胞孵育时也观察到了类似的结果。α-生育酚补充研究的数据证实了我们的体外研究结果,即α-生育酚显著降低LDL的氧化易感性,但不影响其糖基化。因此,虽然糖基化增加了LDL的氧化易感性,但α-生育酚可降低糖基化LDL的氧化,但不影响LDL糖基化。

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