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Multiple roles for CCR2 during fracture healing

机译:CCR2在骨折愈合过程中的多种作用

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Bone injury induces an inflammatory response that involves neutrophils, macrophages and other inflammatory cells. The recruitment of inflammatory cells to sites of injury occurs in response to specific signaling pathways. The CC chemokine receptor type 2 (CCR2) is crucial for recruiting macrophages, as well as regulating osteoclast function. In this study, we examined fracture healing in Ccr2?/? mice. We first demonstrated that the expression of Ccr2 transcripts and the filtration of macrophages into fracture calluses were most robust during the early phases of fracture healing. We then determined that the number of macrophages at the fracture site was significantly lower in Ccr2 ?/? mice compared with wild-type controls at 3 days after injury. As a result, impaired vascularization, decreased formation of callus, and delayed maturation of cartilage were observed at 7 days after injury in mutant mice. At day 14, Ccr2?/? mice had less bone in their calluses. At day 21, Ccr2?/? mice had larger calluses and more bone compared with wild-type mice, suggesting a delayed remodeling. In addition, we examined the effect of Ccr2 mutation on osteoclasts. We found that a lack of Ccr2 did not affect the number of osteoclasts within fracture calluses at 21 days after injury. However, Ccr2?/? osteoclasts exhibited a decreased ability to resorb bone compared with wild-type cells, which could contribute to the delayed remodeling of fracture calluses observed in Ccr2?/? mice. Collectively, these results indicate that a deficiency of Ccr2 reduces the infiltration of macrophages and impairs the function of osteoclasts, leading to delayed fracture healing.
机译:骨损伤会引起涉及中性粒细胞,巨噬细胞和其他炎症细胞的炎症反应。响应于特定的信号传导途径,发生炎症细胞向损伤部位的募集。 CC趋化因子受体2型(CCR2)对于募集巨噬细胞以及调节破骨细胞功能至关重要。在这项研究中,我们检查了Ccr2?/?中的骨折愈合情况。老鼠。我们首先证明,在骨折愈合的早期阶段,Ccr2转录物的表达和巨噬细胞向骨折call的过滤作用最强。然后我们确定,在骨折部位的巨噬细胞数量在Ccr2?/?中明显较低。损伤后3天,将小鼠与野生型对照进行比较。结果,在突变小鼠中,在损伤后第7天观察到血管形成受损,愈伤组织形成减少和软骨成熟延迟。在第14天,Ccr2?/?老鼠的老茧骨少。在第21天,Ccr2?/?与野生型小鼠相比,小鼠的愈伤组织更大,骨头更多,这表明其重构延迟。此外,我们检查了Ccr2突变对破骨细胞的影响。我们发现,在受伤后21天,缺乏Ccr2不会影响骨折老茧中破骨细胞的数量。但是,Ccr2?/?与野生型细胞相比,破骨细胞的骨吸收能力下降,这可能导致Ccr2β/β中观察到的老茧的延迟重塑。老鼠。总体而言,这些结果表明,Ccr2的缺乏会减少巨噬细胞的浸润并损害破骨细胞的功能,从而导致骨折愈合延迟。

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