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大鼠血浆中极低密度脂蛋白的糖基化会损害其分解代谢。

Glycation of very low density lipoprotein from rat plasma impairs its catabolism.

作者信息

Mamo J C, Szeto L, Steiner G

机构信息

Department of Medicine, Toronto General Hospital, Ontario, Canada.

出版信息

Diabetologia. 1990 Jun;33(6):339-45. doi: 10.1007/BF00404637.

Abstract

Rat VLDL were glycated in vitro in the presence or absence of a reducing agent. Prior to glycation, the VLDL triglyceride was endogenously radiolabelled with [3H]-oleic acid. Post glycation the VLDL B-apoprotein was exogenously radiolabelled with [131]I. The double labelled VLDL was then injected into normal rats and the decline in plasma radioactivity of the two isotopes was used as a measure of triglyceride and particle clearance. VLDL glycated in either the presence or absence of reducing agent exhibited a significantly slower removal of triglyceride and apoprotein B compared to normal VLDL. The ability of glycated VLDL triglyceride to act as substrate for lipoprotein lipase and hepatic lipase was examined. Increasing concentrations of normal and glycated VLDL triglyceride were incubated with post-heparin plasma. The kinetics of triglyceride hydrolysis were determined in a manner analogous to Michaelis-Menten analysis. Glycated VLDL was found to be poorer than normal VLDL as a substrate for lipoprotein lipase. Glycation of VLDL appears to interfere with the lipolysis of its triglyceride. This may explain the delayed clearance of glycated VLDL triglyceride in vivo. Glycation also extended the mean plasma residence time of the VLDL particle. These factors may, in part, contribute to the hypertriglyceridaemia observed in subjects with diabetes mellitus.

摘要

大鼠极低密度脂蛋白(VLDL)在有或没有还原剂存在的情况下进行体外糖化。在糖化之前,VLDL甘油三酯用[3H] -油酸进行内源性放射性标记。糖化后,VLDL B -载脂蛋白用[131]I进行外源性放射性标记。然后将双重标记的VLDL注入正常大鼠体内,两种同位素血浆放射性的下降用作甘油三酯和颗粒清除的指标。与正常VLDL相比,在有或没有还原剂存在的情况下糖化的VLDL表现出甘油三酯和载脂蛋白B的清除明显减慢。研究了糖化VLDL甘油三酯作为脂蛋白脂肪酶和肝脂肪酶底物的能力。将正常和糖化VLDL甘油三酯的浓度增加后与肝素后血浆一起孵育。以类似于米氏分析的方式测定甘油三酯水解的动力学。发现糖化VLDL作为脂蛋白脂肪酶的底物比正常VLDL差。VLDL的糖化似乎会干扰其甘油三酯的脂解。这可能解释了体内糖化VLDL甘油三酯清除延迟的原因。糖化还延长了VLDL颗粒在血浆中的平均停留时间。这些因素可能部分导致糖尿病患者中观察到的高甘油三酯血症。

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