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CCL2/CCR2轴在高脂血症小鼠动脉损伤后新生内膜增生中的关键作用涉及早期单核细胞募集以及血小板上CCL2的呈现。

Crucial role of the CCL2/CCR2 axis in neointimal hyperplasia after arterial injury in hyperlipidemic mice involves early monocyte recruitment and CCL2 presentation on platelets.

作者信息

Schober Andreas, Zernecke Alma, Liehn Elisa A, von Hundelshausen Philipp, Knarren Sandra, Kuziel William A, Weber Christian

机构信息

Department of Molecular Cardiovascular Research, University Hospital, Rheinisch-Westfälische Technische Hochschule, Aachen, Germany.

出版信息

Circ Res. 2004 Nov 26;95(11):1125-33. doi: 10.1161/01.RES.0000149518.86865.3e. Epub 2004 Nov 4.

Abstract

Monocyte chemoattractant protein-1 (also known as CC chemokine ligand 2 [CCL2]) and its receptor CC chemokine receptor 2 (CCR2) play a central role in the inflammatory response and neointimal formation after vascular injury. In the context of hyperlipidemia, this appears to involve neointimal monocyte infiltration. Hence, we investigated the function of the CCL2/CCR2 axis in early monocyte recruitment to injured arteries. Wire-induced injury of the carotid artery in apoE-/- mice caused a rapid increase of JE/CCL2 protein in the vessel wall peaking at 24 hours after injury, whereas serum JE/CCL2 was increased solely at 6 hours and blood cell-associated levels were unaltered, as demonstrated by enzyme-linked immunosorbent assay. Immunohistochemistry revealed intense staining for JE/CCL2 in smooth muscle cells (SMCs) and in association with platelets adherent to the denuded vessel wall 24 hours after injury. In vitro, exogenous or SMC-derived JE/CCL2 binds to the platelet surface and triggers monocyte arrest on adherent platelets but not on SMCs in flow assays. Accordingly, monocyte arrest in ex vivo perfused apoE-/- carotid arteries isolated 24 hours after injury was profoundly inhibited by pretreatment with a JE/CCL2 antibody. In CCR2-/-/apoE-/- mice, neointimal plaque area was reduced by 47% compared with CCR2+/+/apoE-/- mice. Moreover, CCR2 deletion markedly decreased neointimal macrophage content while expanding SMC content. Vascular JE/CCL2 expressed by SMCs and immobilized by adherent platelets after endothelial denudation is crucial for mediating early monocyte recruitment to injured arteries in hyperlipidemic mice. This mechanism may explain reduced neointimal macrophage infiltration and lesion formation in CCR2-deficient apoE-/- mice.

摘要

单核细胞趋化蛋白-1(也称为CC趋化因子配体2 [CCL2])及其受体CC趋化因子受体2(CCR2)在血管损伤后的炎症反应和新生内膜形成中起核心作用。在高脂血症的情况下,这似乎涉及新生内膜单核细胞浸润。因此,我们研究了CCL2/CCR2轴在早期单核细胞募集到损伤动脉中的作用。载脂蛋白E基因敲除(apoE-/-)小鼠的颈动脉钢丝损伤导致血管壁中JE/CCL2蛋白迅速增加,在损伤后24小时达到峰值,而血清JE/CCL2仅在6小时增加,血细胞相关水平未改变,酶联免疫吸附测定证明了这一点。免疫组织化学显示,损伤后24小时,平滑肌细胞(SMC)中以及与粘附在裸露血管壁上的血小板相关的JE/CCL2染色强烈。在体外,外源性或SMC来源的JE/CCL2在流动分析中与血小板表面结合并触发单核细胞在粘附血小板上的停滞,但不触发在SMC上的停滞。相应地,用JE/CCL2抗体预处理可显著抑制损伤后24小时分离的离体灌注apoE-/-颈动脉中的单核细胞停滞。与CCR2+/+/apoE-/-小鼠相比,在CCR2-/-/apoE-/-小鼠中,新生内膜斑块面积减少了47%。此外,CCR2缺失显著降低了新生内膜巨噬细胞含量,同时增加了SMC含量。内皮剥脱后由SMC表达并被粘附血小板固定的血管JE/CCL2对于介导高脂血症小鼠损伤动脉的早期单核细胞募集至关重要。这一机制可能解释了CCR2缺陷的apoE-/-小鼠中新生内膜巨噬细胞浸润减少和病变形成减少的原因。

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