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首页> 外文期刊>Thrombosis and Haemostasis: Journal of the International Society on Thrombosis and Haemostasis >Interruption of classic CD40L-CD40 signalling but not of the novel CD40L-Mac-1 interaction limits arterial neointima formation in mice
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Interruption of classic CD40L-CD40 signalling but not of the novel CD40L-Mac-1 interaction limits arterial neointima formation in mice

机译:经典CD40L-CD40信号的中断,但不是新型CD40L-Mac-1相互作用的中断,限制了小鼠动脉新内膜的形成

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摘要

The co-stimulatory immune molecule CD40L figures prominently in a variety of inflammatory conditions including arterial disease. Recently, we made the surprising finding that CD40L mediates atherogenesis independently of its classic receptor CD40 via a novel interaction with the leukocyte integrin Mac-1. Here, we hypothesised that selective blockade of the CD40L-Mac-1 interaction may also retard restenosis. We induced neointima formation in C57/BL6 mice by ligation of the left carotid artery. Mice were randomised to daily intraperitoneal injections of either cM7, a small peptide selectively inhibiting the CD40L-Mac-1 interaction, scM7, a scrambled control peptide, or saline for 28 days. Interestingly, cM7-treated mice developed neointima of similar size compared with mice receiving the control peptide or saline as assessed by computer-assisted analysis of histological cross sections. These data demonstrate that the CD40L-Mac-1 interaction is not required for the development of restenosis. In contrast, CD40-deficient mice subjected to carotid ligation in parallel, developed significantly reduced neointimal lesions compared with respective wild-type controls (2872 ± 843 μm2 vs 35469 ± 11870 μm2). Flow cytometry in CD40-deficient mice revealed reduced formation of platelet-granulocyte and platelet-inflammatory monocyte- aggregates. In vitro, supernatants of CD40-deficient platelet-leukocyte aggregates attenuated proliferation and increased apoptosis of smooth muscle cells. Unlike in the setting of atherosclerosis, CD40L mediates neointima formation via its classic receptor CD40 rather than via its recently described novel interaction with Mac-1. Therefore, selective targeting of CD40L-Mac-1 binding does not appear to be a favorable strategy to fight restenosis.
机译:共刺激免疫分子CD40L在包括动脉疾病在内的各种炎性疾病中占有重要地位。最近,我们做出了令人惊讶的发现,即CD40L通过与白细胞整合素Mac-1的新型相互作用而独立于其经典受体CD40介导动脉粥样硬化。在这里,我们假设CD40L-Mac-1相互作用的选择性阻断也可能延迟再狭窄。我们通过结扎左颈动脉在C57 / BL6小鼠中诱导了新内膜形成。小鼠随机接受每天腹膜内注射28天的cM7,选择性抑制CD40L-Mac-1相互作用的小肽,scM7,加扰的对照肽或盐水。有趣的是,与接受对照肽或生理盐水的小鼠相比,经cM7处理的小鼠发展出了类似大小的新内膜,这是通过计算机辅助分析组织学横截面进行评估的。这些数据表明,再狭窄的发生不需要CD40L-Mac-1相互作用。相反,平行于颈动脉结扎的CD40缺陷型小鼠与相应的野生型对照相比,新内膜病变明显减少(2872±843μm2vs 35469±11870μm2)。 CD40缺陷小鼠的流式细胞仪显示血小板-粒细胞和血小板炎性单核细胞聚集体形成减少。在体外,CD40缺陷型血小板-白细胞聚集体的上清液减弱了平滑肌细胞的增殖并增加了其凋亡。与动脉粥样硬化不同,CD40L通过其经典受体CD40而不是通过最近描述的与Mac-1的新型相互作用介导新内膜的形成。因此,选择性靶向CD40L-Mac-1结合似乎不是对抗再狭窄的有利策略。

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