Macrophages in bone fracture healing: Their essential role in endochondral ossification

软骨内骨化 骨愈合 膜内骨化 软骨 骨化 巨噬细胞 炎症 医学 细胞生物学 病理 化学 免疫学 解剖 生物 体外 生物化学
作者
Claudia Schlundt,Thaqif El Khassawna,Alessandro Serra,Anke Dienelt,Sebastian Wendler,Hanna Schell,Nico van Rooijen,Andreas Radbruch,Richard Lucius,Susanne Hartmann,Georg N. Duda,Katharina Schmidt‐Bleek
出处
期刊:Bone [Elsevier]
卷期号:106: 78-89 被引量:422
标识
DOI:10.1016/j.bone.2015.10.019
摘要

In fracture healing, skeletal and immune system are closely interacting through common cell precursors and molecular mediators. It is thought that the initial inflammatory reaction, which involves migration of macrophages into the fracture area, has a major impact on the long term outcome of bone repair. Interestingly, macrophages reside during all stages of fracture healing. Thus, we hypothesized a critical role for macrophages in the subsequent phases of bone regeneration. This study examined the impact of in vivo induced macrophage reduction, using clodronate liposomes, on the different healing phases of bone repair in a murine model of a standard closed femoral fracture. A reduction in macrophages had no obvious effect on the early fracture healing phase, but resulted in a delayed hard callus formation, thus severely altering endochondral ossification. Clodronate treated animals clearly showed delayed bony consolidation of cartilage and enhanced periosteal bone formation. Therefore, we decided to backtrack macrophage distribution during fracture healing in non-treated mice, focusing on the identification of the M1 and M2 subsets. We observed that M2 macrophages were clearly prevalent during the ossification phase. Therefore enhancement of M2 phenotype in macrophages was investigated as a way to further bone healing. Induction of M2 macrophages through interleukin 4 and 13 significantly enhanced bone formation during the 3 week investigation period. These cumulative data illustrate their so far unreported highly important role in endochondral ossification and the necessity of a fine balance in M1/M2 macrophage function, which appears mandatory to fracture healing and successful regeneration.
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