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大鼠血浆脂蛋白胆固醇酯部分的血管内代谢。

Intravascular metabolism of the cholesteryl ester moiety of rat plasma lipoproteins.

作者信息

Eisenberg S, Oschry Y, Zimmerman J

出版信息

J Lipid Res. 1984 Feb;25(2):121-8.

PMID:6707522
Abstract

The intravascular metabolism of the cholesteryl ester moiety of rat plasma LDL, HDL1, and HDL2 was determined in intact male rats. Biosynthetically labeled lipoproteins were prepared by zonal ultracentrifugation from the plasma of rats injected with [3H]cholesterol. The lipoproteins were concentrated by vacuum ultrafiltration as other procedures were found to alter the biological properties of the lipoproteins. After injection of labeled LDL, [3H]cholesteryl esters remained with the injected lipoprotein and decayed from plasma with a t1/2 of 7-8 hours. [3H]Cholesteryl esters in HDL1 behaved similarly and decayed with a t1/2 of 10.5 hours. With HDL2, however, a different metabolic pattern was observed with intraplasma conversion of some [3H]cholesteryl ester HDL2 particles to HDL1. Since such conversion of HDL2 to HDL1 was not observed after in vitro incubations of rat plasma, this process seems to depend on metabolic events that occur in vivo. [3H]Cholesteryl esters disappeared from HDL2 with a t1/2 of 6-7 hours, while the esters that were transferred to HDL1 decayed with a t1/2 of 10-11 hours, similar to labeled cholesteryl esters injected with HDL1. The study demonstrated that the high apoE content of rat plasma HDL1 is not associated with rapid catabolism of the lipoprotein and that a major source of HDL1 in the rat is the intraplasma conversion of HDL2 particles to HDL1.

摘要

在完整的雄性大鼠中测定了大鼠血浆低密度脂蛋白(LDL)、高密度脂蛋白1(HDL1)和高密度脂蛋白2(HDL2)中胆固醇酯部分的血管内代谢。通过区带超速离心法从注射了[3H]胆固醇的大鼠血浆中制备生物合成标记的脂蛋白。由于发现其他方法会改变脂蛋白的生物学特性,因此通过真空超滤对脂蛋白进行浓缩。注射标记的LDL后,[3H]胆固醇酯与注射的脂蛋白一起存在,并以7 - 8小时的半衰期从血浆中衰减。HDL1中的[3H]胆固醇酯表现类似,半衰期为10.5小时。然而,对于HDL2,观察到了不同的代谢模式,一些[3H]胆固醇酯HDL2颗粒在血浆内转化为HDL1。由于在大鼠血浆的体外孵育后未观察到HDL2向HDL1的这种转化,该过程似乎取决于体内发生的代谢事件。[3H]胆固醇酯以6 - 7小时的半衰期从HDL2中消失,而转移到HDL1中的酯以10 - 11小时的半衰期衰减,类似于与HDL1一起注射的标记胆固醇酯。该研究表明,大鼠血浆HDL1中高载脂蛋白E含量与该脂蛋白的快速分解代谢无关,并且大鼠HDL1的主要来源是HDL2颗粒在血浆内转化为HDL1。

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