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Macrophages are required for neonatal heart regeneration

机译:新生儿心脏再生需要巨噬细胞

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Myocardial infarction (MI) leads to cardiomyocyte death, which triggers an immune response that clears debris and restores tissue integrity. In the adult heart, the immune system facilitates scar formation, which repairs the damaged myocardium but compromises cardiac function. In neonatal mice, the heart can regenerate fully without scarring following MI; however, this regenerative capacity is lost by P7. The signals that govern neonatal heart regeneration are unknown. By comparing the immune response to MI in mice at P1 and P14, we identified differences in the magnitude and kinetics of monocyte and macrophage responses to injury. Using a cell-depletion model, we determined that heart regeneration and neoangiogenesis following MI depends on neonatal macrophages. Neonates depleted of macrophages were unable to regenerate myocardia and formed fibrotic scars, resulting in reduced cardiac function and angiogenesis. Immunophenotyping and gene expression profiling of cardiac macrophages from regenerating and nonregenerating hearts indicated that regenerative macrophages have a unique polarization phenotype and secrete numerous soluble factors that may facilitate the formation of new myocardium. Our findings suggest that macrophages provide necessary signals to drive angiogenesis and regeneration of the neonatal mouse heart. Modulating inflammation may provide a key therapeutic strategy to support heart regeneration.
机译:心肌梗死(MI)会导致心肌细胞死亡,从而触发免疫反应,清除碎片并恢复组织完整性。在成年心脏中,免疫系统促进疤痕形成,从而修复受损的心肌,但会损害心脏功能。在新生小鼠中,心脏可以完全再生而不会在心肌梗死后留下疤痕。但是,P7失去了这种再生能力。控制新生儿心脏再生的信号尚不清楚。通过比较小鼠在P1和P14时对MI的免疫反应,我们确定了单核细胞和巨噬细胞对损伤反应的幅度和动力学差异。使用细胞耗竭模型,我们确定MI后的心脏再生和新血管生成取决于新生儿巨噬细胞。耗尽巨噬细胞的新生儿无法再生心肌并形成纤维化疤痕,导致心脏功能降低和血管生成。来自再生和非再生心脏的心脏巨噬细胞的免疫表型分析和基因表达谱分析表明,再生巨噬细胞具有独特的极化表型,并分泌许多可促进新心肌形成的可溶性因子。我们的发现表明巨噬细胞提供必要的信号来驱动新生小鼠心脏的血管生成和再生。调节炎症可能提供支持心脏再生的关键治疗策略。

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