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首页> 外文期刊>Circulation: An Official Journal of the American Heart Association >A MicroRNA93-Interferon Regulatory Factor-9-Immunoresponsive Gene-1-Itaconic Acid Pathway Modulates M2-Like Macrophage Polarization to Revascularize Ischemic Muscle
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A MicroRNA93-Interferon Regulatory Factor-9-Immunoresponsive Gene-1-Itaconic Acid Pathway Modulates M2-Like Macrophage Polarization to Revascularize Ischemic Muscle

机译:MicroRNA93-干扰素调节因子-9免疫反应性基因-1-衣康酸途径调节M2样巨噬细胞极化以血运重建缺血性肌肉

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BACKGROUND: Currently, no therapies exist for treating and improving outcomes in patients with severe peripheral artery disease (PAD). MicroRNA93 (miR93) has been shown to favorably modulate angiogenesis and to reduce tissue loss in genetic PAD models. However, the cell-specific function, downstream mechanisms, or signaling involved in miR93-mediated ischemic muscle neovascularization is not clear. Macrophages were best known to modulate arteriogenic response in PAD, and the extent of arteriogenic response induced by macrophages is dependent on greater M2 to M1 activation/polarization state. In the present study, we identified a novel mechanism by which miR93 regulates macrophage polarization to promote angiogenesis and arteriogenesis to revascularize ischemic muscle in experimental PAD.
机译:背景:目前,不存在治疗和改善严重外周血动脉疾病(PAD)患者的结果的疗法。 已经证明MicroRNA93(miR93)有利地调节血管生成并减少遗传垫模型中的组织损失。 然而,在MiR93介导的缺血性肌肉新生血管中涉及的细胞特异性功能,下游机制或信号传导尚不清楚。 最符合巨噬细胞在垫中调节动脉发生反应,并且巨噬细胞诱导的动脉发生反应程度依赖于更大的M2至M1激活/偏振状态。 在本研究中,我们确定了一种新的机制,即MiR93调节巨噬细胞极化以促进血管生成和动脉发生,以血运重建于实验垫中的缺血性肌肉。

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