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Injury-induced alterations in newly synthesized sulphated proteoglycans from rabbit arterial neointima covered by regenerated endothelium

机译:新生内皮覆盖的兔动脉新内膜新合成的硫酸化蛋白聚糖的损伤诱导变化

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摘要

Proteoglycan (PG) synthesis is a highly regulated, dynamic process that is known to be altered during atherogenesis. Endothelial injury, which may be the primary event in atherosclerosis, has been reported to stimulate PG synthesis and accumulation in the arterial extracellular matrix. The objective of this investigation was to study injury-induced alterations in PG synthesis and accumulation in the neointima, developed in response to a selective balloon catheter de-endothelialization of aortas of normocholesterolaemic rabbits. One group of rabbit aortas was incubated with 35S-Na2SO4 for 8 h, to study in vitro the de novo synthesis of sulphated PG. Another group of rabbit aortas was used to study PG accumulated in aortic neointima vs. PG present in intima-media of normal aortas. Newly synthesized sulphated PG was characterized by light microscopic radioautography and size exclusion chromatography. Purified intimal-medial PG extracts from unlabelled aortas were analysed for protein and glycosaminoglycan (GAG) content and GAG distribution pattern. Results from this study revealed that the neointima of injured aortas synthesized sulphated PG at a significantly higher concentration than the intima of normal aortas. Size exclusion chromatography revealed that neointima synthesized higher molecular weight PG, and in a higher proportion, than its counterpart PG from normal aortas. PG accumulated in neointima of injured aortas showed a significantly altered GAG distribution pattern. These data confirm that neointima developed in response to injury synthesizes and accumulates PG which is altered compared to PG present in the intima-media of normal aorta.
机译:蛋白聚糖(PG)合成是一个高度调控的动态过程,已知在动脉粥样硬化发生过程中会发生改变。据报道,内皮损伤可能是动脉粥样硬化的主要事件,可刺激PG的合成和在动脉细胞外基质中的积累。这项研究的目的是研究损伤引起的新内膜中PG合成和积累的变化,这种变化是针对正常胆固醇回肠兔的主动脉选择性球囊导管去内皮化而产生的。一组兔主动脉与 35 S-Na2SO4孵育8小时,以体外研究硫酸化PG的从头合成。另一组兔主动脉用于研究主动脉新内膜中积累的PG与正常主动脉内膜中层中存在的PG的关系。通过光学显微放射自显影和尺寸排阻色谱对新合成的硫酸化PG进行了表征。从未标记的主动脉纯化的内膜中层PG提取物的蛋白质和糖胺聚糖(GAG)含量和GAG分布模式进行了分析。这项研究的结果表明,受伤的主动脉的新内膜合成的硫酸化PG的浓度明显高于正常主动脉的内膜。尺寸排阻色谱法显示,新内膜比正常主动脉合成更高分子量的PG,比例更高。受损主动脉新内膜中积累的PG显示GAG分布模式发生了显着改变。这些数据证实,新内膜响应损伤而合成并积累,与正常主动脉内膜中层存在的PG相比,PG发生了改变。

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