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Complement C3a signaling facilitates skeletal muscle regeneration by regulating monocyte function and trafficking

机译:补体C3a信号传导通过调节单核细胞功能和运输促进骨骼肌再生

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Regeneration of skeletal muscle following injury is accompanied by transient inflammation. Here we show that complement is activated in skeletal muscle injury and plays a key role during regeneration. Genetic ablation of complement C3 or its inactivation with Cobra Venom Factor (CVF) result in impaired muscle regeneration following cardiotoxin-induced injury in mice. The effect of complement in muscle regeneration is mediated by the alternative pathway and C3a receptor (C3aR) signaling, as deletion of Cfb, a key alternative pathway component, or C3aR leads to impaired regeneration and reduced monocyte/macrophage infiltration. Monocytes from C3aR-deficient mice express a reduced level of adhesion molecules, cytokines and genes associated with antigen processing and presentation. Exogenous administration of recombinant CCL5 to C3aR-deficient mice rescues the defects in inflammatory cell recruitment and regeneration. These findings reveal an important role of complement C3a in skeletal muscle regeneration, and suggest that manipulating complement system may produce therapeutic benefit in muscle injury and regeneration.
机译:损伤后骨骼肌的再生伴随着短暂的炎症。在这里,我们显示补体在骨骼肌损伤中被激活,并在再生过程中起关键作用。补体C3的遗传消融或用眼镜蛇毒因子(CVF)灭活会导致小鼠心脏毒素诱导的损伤后肌肉再生受损。补体在肌肉再生中的作用由替代途径和C3a受体(C3aR)信号传导介导,因为Cfb(一种关键的替代途径成分)或C3aR的缺失会导致再生受损和单核细胞/巨噬细胞浸润减少。来自C3aR缺陷小鼠的单核细胞表达的抗原分子,细胞因子和与抗原加工和呈递相关的基因水平降低。向C3aR缺陷型小鼠外源重组CCL5的给药可以挽救炎症细胞募集和再生中的缺陷。这些发现揭示了补体C3a在骨骼肌再生中的重要作用,并表明操纵补体系统可能在肌肉损伤和再生中产生治疗益处。

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