首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >Phagocytosis of aggregated lipoprotein by macrophages: low density lipoprotein receptor-dependent foam-cell formation.
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Phagocytosis of aggregated lipoprotein by macrophages: low density lipoprotein receptor-dependent foam-cell formation.

机译:巨噬细胞吞噬聚集的脂蛋白:低密度脂蛋白受体依赖性泡沫细胞形成。

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摘要

Low density lipoprotein (LDL) modified by incubation with phospholipase C (PLC-LDL) aggregates in solution and is rapidly taken up and degraded by human and mouse macrophages, producing foam cells in vitro. Human, mouse, and rabbit macrophages degraded 125I-labeled PLC-LDL (125I-PLC-LDL) more rapidly than native 125I-labeled LDL (125I-LDL), while nonphagocytic cells such as human fibroblasts and bovine aortic endothelial cells degraded 125I-PLC-LDL more slowly than 125I-LDL. This suggested the mechanism for internalization of PLC-LDL was phagocytosis. When examined by electron microscopy, mouse peritoneal macrophages appeared to be phagocytosing PLC-LDL. The uptake and degradation of 125I-PLC-LDL by human macrophages was inhibited greater than 80% by the monoclonal antibody C7 (IgG2b) produced by hybridoma C7, which blocks the ligand binding domain of the LDL receptor. Similarly, methylation of 125I-LDL (125I-MeLDL) prior to treatment with phospholipase C decreased its subsequent uptake and degradation by human macrophages by greater than 90%. The uptake and degradation of phospholipase C-modified 125I-MeLDL by macrophages could be restored by incubation of the methylated lipoprotein with apoprotein E, a ligand recognized by the LDL receptor. These results indicate that macrophages internalize PLC-LDL by LDL receptor-dependent phagocytosis.
机译:通过与磷脂酶C(PLC-LDL)孵育而修饰的低密度脂蛋白(LDL)在溶液中聚集,并被人和小鼠巨噬细胞迅速吸收并降解,从而在体外产生泡沫细胞。人,小鼠和兔巨噬细胞降解125I标记的PLC-LDL(125I-PLC-LDL)的速度比天然125I标记的LDL(125I-LDL)快,而非吞噬细胞(例如人成纤维细胞和牛主动脉内皮细胞)降解125I- PLC-LDL比125I-LDL慢。这表明PLC-LDL内在化的机制是吞噬作用。当通过电子显微镜检查时,小鼠腹膜巨噬细胞似乎正在吞噬PLC-LDL。杂交瘤C7产生的单克隆抗体C7(IgG2b)阻断了LDL受体的配体结合域,从而抑制了人类巨噬细胞对125I-PLC-LDL的摄取和降解,抑制率超过80%。类似地,在用磷脂酶C处理之前,125 I-LDL(125I-MeLDL)的甲基化将其随后的摄取和降解减少了90%以上。巨噬细胞对磷脂酶C修饰的125I-MeLDL的摄取和降解可以通过将甲基化脂蛋白与载脂蛋白E(一种被LDL受体识别的配体)孵育来恢复。这些结果表明巨噬细胞通过LDL受体依赖性吞噬作用使PLC-LDL内在化。

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