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RNAi targeting multiple cell adhesion molecules reduces immune cell recruitment and vascular inflammation after myocardial infarction

机译:靶向多种细胞粘附分子的RNai减少心肌梗塞后的免疫细胞募集和血管炎症

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摘要

Myocardial infarction (MI) leads to a systemic surge of vascular inflammation in mice and humans, resulting in secondary ischemic complications and high mortality. We show that, in ApoE−/− mice with coronary ligation, increased sympathetic tone up-regulates not only hematopoietic leukocyte production but also plaque endothelial expression of adhesion molecules. To counteract the resulting arterial leukocyte recruitment, we developed nanoparticle-based RNA interference (RNAi) that effectively silences five key adhesion molecules. Simultaneously encapsulating small interfering RNA (siRNA)–targeting intercellular cell adhesion molecules 1 and 2 (Icam1 and Icam2), vascular cell adhesion molecule 1 (Vcam1), and E- and P-selectins (Sele and Selp) into polymeric endothelial-avid nanoparticles reduced post-MI neutrophil and monocyte recruitment into atherosclerotic lesions and decreased matrix-degrading plaque protease activity. Five-gene combination RNAi also curtailed leukocyte recruitment to ischemic myocardium. Therefore, targeted multigene silencing may prevent complications after acute MI.
机译:心肌梗塞(MI)导致小鼠和人类的血管炎症全身性涌动,导致继发性缺血并发症和高死亡率。我们显示,在冠状动脉结扎的ApoE-/-小鼠中,增加的交感神经调不仅调节造血白细胞的产生,而且还调节粘附分子的斑块内皮表达。为了抵消最终的动脉白细胞募集,我们开发了基于纳米粒子的RNA干扰(RNAi),可有效沉默五个关键粘附分子。同时将靶向小干扰RNA(siRNA)的细胞间细胞粘附分子1和2(Icam1和Icam2),血管细胞粘附分子1(Vcam1)以及E-和P-选择素(Sele和Selp)封装到聚合的内皮细胞纳米颗粒中减少心肌梗死后中性粒细胞和单核细胞募集进入动脉粥样硬化病变,并降低基质降解菌斑蛋白酶活性。五基因组合RNAi也减少了白细胞向缺血性心肌的募集。因此,靶向多基因沉默可以预防急性心肌梗死后的并发症。

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