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人脐带动脉和静脉内皮细胞对低密度脂蛋白的代谢

Low density lipoprotein metabolism by endothelial cells from human umbilical cord arteries and veins.

作者信息

van Hinsbergh V W, Havekes L, Emeis J J, van Corven E, Scheffer M

出版信息

Arteriosclerosis. 1983 Nov-Dec;3(6):547-59. doi: 10.1161/01.atv.3.6.547.

Abstract

Binding and metabolism of low density lipoprotein (LDL) and acetylated LDL were examined in endothelial cells from human umbilical cord arteries and veins. Both high and low affinity LDL interactions were observed. High affinity LDL binding and catabolism were increased five- to sevenfold after preincubation for 18 hours in LPDS containing medium. Subconfluent cells degraded, endocytosed, and bound 1.5 to 2.7 times more LDL by high affinity interaction than confluent cells, when endothelial cell growth supplement (ECGS) was present in the culture system. In the absence of ECGS, these ratios were somewhat less. Low affinity LDL metabolism was less affected by the state of confluency. Binding of LDL and acetylated LDL by venous endothelial cells was more than two- and threefold, respectively, than that by comparable arterial cells. However, the difference in LDL binding was not reflected in an altered LDL catabolism. There apparently is a population of low affinity binding sites not involved in LDL catabolism. LDL metabolism was identical in cells, which were cultured in medium supplemented with 20% to 100% serum or hirudin- or heparin-treated platelet-poor plasma. Without preincubation in LPDS, high affinity adsorptive endocytosis mediated the main part of LDL uptake only at low LDL concentrations (5 to 20 micrograms protein/ml). However, at physiological LDL concentrations (550 micrograms/ml), we estimated that this process mediated only 17% of the LDL uptake. We calculated that fluid endocytosis and low affinity adsorptive endocytosis of LDL accounted for the remaining 12% and 70%, respectively, of the LDL uptake at physiological LDL concentrations.

摘要

研究了人脐带动脉和静脉内皮细胞中低密度脂蛋白(LDL)和乙酰化LDL的结合与代谢。观察到了高亲和力和低亲和力的LDL相互作用。在含LPDS的培养基中预孵育18小时后,高亲和力LDL结合和分解代谢增加了五到七倍。当培养系统中存在内皮细胞生长补充剂(ECGS)时,亚汇合细胞通过高亲和力相互作用降解、内吞并结合的LDL比汇合细胞多1.5至2.7倍。在没有ECGS的情况下,这些比率略低。低亲和力LDL代谢受汇合状态的影响较小。静脉内皮细胞对LDL和乙酰化LDL的结合分别比相应的动脉细胞多两倍和三倍以上。然而,LDL结合的差异并未反映在LDL分解代谢的改变上。显然存在一群不参与LDL分解代谢的低亲和力结合位点。在补充有20%至100%血清或水蛭素或肝素处理的少血小板血浆的培养基中培养的细胞中,LDL代谢是相同的。在没有在LPDS中预孵育的情况下,高亲和力吸附性内吞作用仅在低LDL浓度(5至20微克蛋白质/毫升)时介导LDL摄取的主要部分。然而,在生理LDL浓度(550微克/毫升)下,我们估计该过程仅介导17%的LDL摄取。我们计算得出,在生理LDL浓度下,LDL的液体内吞作用和低亲和力吸附性内吞作用分别占LDL摄取的其余12%和70%。

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