Faculty of Dentistry, McGill University, Montreal, Que., Canada.
Cells Tissues Organs. 2011;194(2-4):313-9. doi: 10.1159/000324244. Epub 2011 May 13.
Bone wound healing after surgical drilling/cutting initially involves a typical inflammatory response with a leukocyte-rich cell infiltrate whose professional phagocytes (neutrophils and macrophages) clear the wound site of various bacterial (if present), particulate, and insoluble components arising from the original wounding event. As part of this process, in a surgical model of bone repair in rats, osteopontin (OPN) secreted by macrophages - with its known mineral-binding properties arising from abundant calcium-binding phosphorylations and overall net negative charge - binds to the newly exposed mineralized surfaces of particulate bone debris and the osseous wound margins created by the drilling, as shown by high-resolution immunogold labeling and transmission electron microscopy. For bone debris powder, OPN serves as an opsonin for clearance by macrophage phagocytosis, as demonstrated in vitro by phagocytosis assays using cultured J774.A1 murine macrophages and OPN-coated microbeads. Macrophage-secreted OPN binding to the bone wound margins contributes to cement line (plane) formation with subsequent OPN additions to the cement line coming from osteoblast lineage cells arriving at this site to effect bone repair upon further osteoblast differentiation, and extracellular matrix deposition and mineralization. Such interfacial OPN is thought to contribute to the cell adhesion, cell signaling, and matrix mineralization events required to effectively integrate the new bone into the preexisting bone at the margins of the drill site.
在外科钻孔/切割后,骨创伤愈合最初涉及典型的炎症反应,其中富含白细胞的细胞浸润,其专业吞噬细胞(中性粒细胞和巨噬细胞)清除创伤部位的各种细菌(如果存在)、颗粒和不溶性成分,这些成分源于原始创伤事件。作为这个过程的一部分,在大鼠骨修复的外科模型中,巨噬细胞分泌的骨桥蛋白 (OPN) - 由于其丰富的钙结合磷酸化和整体净负电荷而具有已知的矿物结合特性 - 与新暴露的矿化颗粒状骨碎片和钻孔造成的骨创伤边缘结合,如高分辨率免疫金标记和透射电子显微镜所示。对于骨碎片粉末,OPN 作为吞噬细胞吞噬作用的调理素,通过体外使用培养的 J774.A1 鼠巨噬细胞和 OPN 包被的微球进行吞噬作用测定来证明。巨噬细胞分泌的 OPN 与骨创伤边缘结合有助于形成水泥线(平面),随后成骨细胞系细胞到达该部位进行骨修复,进一步分化成骨细胞,细胞外基质沉积和矿化,OPN 添加到水泥线中。这种界面 OPN 被认为有助于细胞黏附、细胞信号转导和基质矿化事件,这些事件对于将新骨有效地整合到钻孔部位边缘的现有骨中是必需的。