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苯扎贝特对Ⅲ型高脂蛋白血症患者载脂蛋白B代谢的影响。

Effects of bezafibrate on apolipoprotein B metabolism in type III hyperlipoproteinemic subjects.

作者信息

Packard C J, Clegg R J, Dominiczak M H, Lorimer A R, Shepherd J

出版信息

J Lipid Res. 1986 Sep;27(9):930-8.

PMID:3783047
Abstract

This study was designed to investigate the response of Type III hyperlipoproteinemic subjects to bezafibrate therapy. The metabolism of apolipoprotein B was examined in four lipoprotein subclasses of Sf 60-400 (large very low density lipoprotein (VLDL)), Sf 20-60 (small VLDL), Sf 12-20 (intermediate density lipoprotein (IDL)), and Sf 0-12 (low density lipoprotein (LDL)) before and during bezafibrate therapy. Treatment reduced the plasma concentration of VLDL and raised high density lipoprotein (HDL) cholesterol. There was no net change in LDL cholesterol or its associated apolipoprotein B. The decrease in plasma VLDL derived mainly from an inhibition of synthesis of both large and small subfractions which reduced the number of particles in the circulation without normalizing their lipid composition. Catabolism of the larger VLDL also increased, presumably as a result of lipoprotein lipase activation. Although the plasma concentration of LDL was unchanged, both its synthesis and catabolism were perturbed. Its fractional catabolic rate fell by 50%, but the impact that this would have had on its steady state level in the circulation was apparently blunted by a decrease in its synthesis from Sf 12-20 IDL. In the control phase of the study, most IDL apolipoprotein B was converted to LDL. Bezafibrate therapy channelled this material towards direct catabolism.

摘要

本研究旨在调查Ⅲ型高脂蛋白血症患者对苯扎贝特治疗的反应。在苯扎贝特治疗前及治疗期间,对Sf 60 - 400(大极低密度脂蛋白(VLDL))、Sf 20 - 60(小VLDL)、Sf 12 - 20(中间密度脂蛋白(IDL))和Sf 0 - 12(低密度脂蛋白(LDL))这四个脂蛋白亚类中的载脂蛋白B代谢进行了检查。治疗降低了VLDL的血浆浓度并提高了高密度脂蛋白(HDL)胆固醇水平。LDL胆固醇及其相关载脂蛋白B没有净变化。血浆VLDL的降低主要源于对大、小亚组分合成的抑制,这减少了循环中的颗粒数量,而未使其脂质组成正常化。较大VLDL的分解代谢也增加,可能是脂蛋白脂肪酶激活的结果。尽管LDL的血浆浓度未变,但其合成和分解代谢均受到干扰。其分解代谢率下降了50%,但这对其在循环中的稳态水平的影响显然因Sf 12 - 20 IDL来源的LDL合成减少而减弱。在研究的对照阶段,大多数IDL载脂蛋白B转化为LDL。苯扎贝特治疗使这些物质直接进入分解代谢途径。

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