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来自受伤兔主动脉的脂蛋白-蛋白聚糖复合物可加速动脉平滑肌细胞对脂蛋白的摄取。

Lipoprotein-proteoglycan complexes from injured rabbit aortas accelerate lipoprotein uptake by arterial smooth muscle cells.

作者信息

Ismail N A, Alavi M Z, Moore S

机构信息

Department of Pathology, McGill University, Montreal, PQ, Canada.

出版信息

Atherosclerosis. 1994 Jan;105(1):79-87. doi: 10.1016/0021-9150(94)90010-8.

Abstract

Lipoprotein-proteoglycan (LP-PG) complexes are taken up more avidly by macrophages and smooth muscle cells (SMCs) than native lipoproteins (LPs). The enhanced uptake may contribute to lipid accumulation and foam cell formation during atherogenesis. Endothelial injury is known to alter proteoglycan (PG) synthesis and distribution in the neointima developed in response to injury. The present study examines the uptake and degradation of LP-PG complexes, derived from PG of injured aortas by arterial SMCs. Rabbit apo-B lipoprotein (LP), including VLDL, IDL and LDL was isolated by ultracentrifugation and coupled with PG extracted from normal aortas (NPG) or with PG from injured aortas (IPG). Rabbit aortic SMCs were cultured from intima-media explants, incubated with 125I-LP, 125I-LP-NPG or 125I-LP-IPG for 20 h at 37 degrees C. LP binding, internalization and degradation were markedly increased (P < 0.001) for LP-NPG and LP-IPG over native LP. Competition experiments indicated that more than 50% of the LP-PG complexes were taken up by the apo-B/E receptor pathway. Phagocytosis was the second important route of uptake of these complexes, whereas the scavenger receptor played a minor part in the uptake and degradation of LP-PG complexes. Data from this study indicate that LP-PG complexes accelerate LP uptake and degradation by SMC more than native LP. Therefore, these complexes may contribute to lipid accumulation by SMC, thus generating foam cells. Furthermore, LP-PG complexes prepared from PG of injured aortas are more effective in lipid accumulation than LP-PG complexes from PG of normal aortas.

摘要

脂蛋白-蛋白聚糖(LP-PG)复合物比天然脂蛋白(LPs)更易被巨噬细胞和平滑肌细胞(SMCs)摄取。这种增强的摄取可能在动脉粥样硬化形成过程中促进脂质积累和泡沫细胞形成。已知内皮损伤会改变蛋白聚糖(PG)在损伤后反应后发展的新生内膜中的合成和分布。本研究检测了动脉平滑肌细胞对源自损伤主动脉PG的LP-PG复合物的摄取和降解情况。通过超速离心分离兔载脂蛋白B脂蛋白(LP),包括极低密度脂蛋白(VLDL)、中间密度脂蛋白(IDL)和低密度脂蛋白(LDL),并将其与从正常主动脉提取的PG(NPG)或损伤主动脉的PG(IPG)偶联。从内膜-中膜外植体培养兔主动脉平滑肌细胞,在37℃下与125I-LP、125I-LP-NPG或125I-LP-IPG孵育20小时。与天然LP相比,LP-NPG和LP-IPG的LP结合、内化和降解显著增加(P<0.001)。竞争实验表明,超过50%的LP-PG复合物通过载脂蛋白B/E受体途径被摄取。吞噬作用是这些复合物摄取的第二个重要途径,而清道夫受体在LP-PG复合物的摄取和降解中起次要作用。本研究数据表明,LP-PG复合物比天然LP更能加速平滑肌细胞对LP的摄取和降解。因此,这些复合物可能促进平滑肌细胞的脂质积累,从而产生泡沫细胞。此外,由损伤主动脉的PG制备的LP-PG复合物在脂质积累方面比正常主动脉的PG制备的LP-PG复合物更有效。

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