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贝特类药物对脂质及脂蛋白代谢的作用机制。

Mechanism of action of fibrates on lipid and lipoprotein metabolism.

作者信息

Staels B, Dallongeville J, Auwerx J, Schoonjans K, Leitersdorf E, Fruchart J C

机构信息

Unité 325 INSERM, Département d'Athérosclérose, Institut Pasteur de Lille, 59019 Lille, France.

出版信息

Circulation. 1998 Nov 10;98(19):2088-93. doi: 10.1161/01.cir.98.19.2088.

Abstract

Treatment with fibrates, a widely used class of lipid-modifying agents, results in a substantial decrease in plasma triglycerides and is usually associated with a moderate decrease in LDL cholesterol and an increase in HDL cholesterol concentrations. Recent investigations indicate that the effects of fibrates are mediated, at least in part, through alterations in transcription of genes encoding for proteins that control lipoprotein metabolism. Fibrates activate specific transcription factors belonging to the nuclear hormone receptor superfamily, termed peroxisome proliferator-activated receptors (PPARs). The PPAR-alpha form mediates fibrate action on HDL cholesterol levels via transcriptional induction of synthesis of the major HDL apolipoproteins, apoA-I and apoA-II. Fibrates lower hepatic apoC-III production and increase lipoprotein lipase--mediated lipolysis via PPAR. Fibrates stimulate cellular fatty acid uptake, conversion to acyl-CoA derivatives, and catabolism by the beta-oxidation pathways, which, combined with a reduction in fatty acid and triglyceride synthesis, results in a decrease in VLDL production. In summary, both enhanced catabolism of triglyceride-rich particles and reduced secretion of VLDL underlie the hypotriglyceridemic effect of fibrates, whereas their effect on HDL metabolism is associated with changes in HDL apolipoprotein expression.

摘要

贝特类药物是一类广泛使用的脂质调节药物,使用该药物治疗可使血浆甘油三酯大幅降低,通常还会使低密度脂蛋白胆固醇适度降低,高密度脂蛋白胆固醇浓度升高。最近的研究表明,贝特类药物的作用至少部分是通过调控脂蛋白代谢相关蛋白的基因转录来介导的。贝特类药物可激活核激素受体超家族中的特定转录因子,即过氧化物酶体增殖物激活受体(PPARs)。PPAR-α亚型通过转录诱导主要的高密度脂蛋白载脂蛋白apoA-I和apoA-II的合成,介导贝特类药物对高密度脂蛋白胆固醇水平的作用。贝特类药物可降低肝脏中apoC-III的生成,并通过PPAR增加脂蛋白脂肪酶介导的脂解作用。贝特类药物可刺激细胞摄取脂肪酸,将其转化为酰基辅酶A衍生物,并通过β-氧化途径进行分解代谢,这与脂肪酸和甘油三酯合成减少相结合,导致极低密度脂蛋白生成减少。总之,富含甘油三酯颗粒的分解代谢增强和极低密度脂蛋白分泌减少共同构成了贝特类药物的降甘油三酯作用,而它们对高密度脂蛋白代谢的影响与高密度脂蛋白载脂蛋白表达的变化有关。

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