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巨噬细胞增强β-极低密度脂蛋白的结合以及培养的主动脉平滑肌细胞中胆固醇酯的积累。

Macrophages enhance binding of beta-VLDL and cholesterol ester accumulation in cultured aortic smooth muscle cells.

作者信息

Rennick R E, Campbell J H, Campbell G R

机构信息

Baker Medical Research Institute, Prahran, Victoria, Australia.

出版信息

Heart Vessels. 1994;9(1):19-29. doi: 10.1007/BF01744492.

Abstract

The effect of macrophages on the uptake of beta-very low-density lipoprotein (beta-VLDL) by smooth muscle cells (SMC) expressing different morphological phenotypes was examined in culture. The SMC were grown alone and in co-culture with macrophages for four days, then incubated with different concentrations of 125I-beta-VLDL for 3 h at 4 degrees C or with 75 ug/ml beta-VLDL for 24 h at 37 degrees C. The binding of beta-VLDL to SMC at 4 degrees C was enhanced in the presence of macrophages irrespective of the phenotype expressed by SMC. This occurred through modification of the lipoprotein, since binding of re-isolated macrophage-conditioned beta-VLDL to SMC was 12.5 times that of fresh beta-VLDL. This modified form of beta-VLDL competed with fresh beta-VLDL for binding to SMC. Binding was inhibited in the presence of probucol, suggesting that an oxidative mechanism may be involved. The presence of macrophages also enhanced the accumulation of beta-VLDL-derived cholesterol in SMC. While most of this is a consequence of the enhanced binding, macrophages may also act directly on SMC to increase cholesterol accumulation, since the activity of acid cholesterol ester hydrolase and neutral cholesterol ester hydrolase in SMC was reduced in the presence of macrophages.

摘要

在培养过程中,研究了巨噬细胞对表达不同形态表型的平滑肌细胞(SMC)摄取β-极低密度脂蛋白(β-VLDL)的影响。将SMC单独培养以及与巨噬细胞共培养四天,然后在4℃下用不同浓度的125I-β-VLDL孵育3小时,或在37℃下用75μg/mlβ-VLDL孵育24小时。无论SMC表达何种表型,在巨噬细胞存在的情况下,4℃时β-VLDL与SMC的结合都会增强。这是通过脂蛋白的修饰发生的,因为重新分离的巨噬细胞条件培养基中的β-VLDL与SMC的结合是新鲜β-VLDL的12.5倍。这种修饰形式的β-VLDL与新鲜β-VLDL竞争与SMC的结合。在普罗布考存在的情况下结合受到抑制,这表明可能涉及氧化机制。巨噬细胞的存在也增强了SMC中β-VLDL衍生胆固醇的积累。虽然这大部分是结合增强的结果,但巨噬细胞也可能直接作用于SMC以增加胆固醇积累,因为在巨噬细胞存在的情况下,SMC中酸性胆固醇酯水解酶和中性胆固醇酯水解酶的活性降低。

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