首页> 外文期刊>Journal of Materials Science. Materials in Medicine >The influence of surface mineral and osteopontin on the formation and function of murine bone mafrow-derived osteoclasts
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The influence of surface mineral and osteopontin on the formation and function of murine bone mafrow-derived osteoclasts

机译:表面矿物质和骨桥蛋白对鼠源性骨髓基质成骨细胞破骨细胞形成和功能的影响

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The phosphorylated glycoprotein osteopontin (OPN) is involved in the regulation of biomineralization under normal and pathological conditions. Its actions include inhibiting apatite crystal growth and promoting the formation and function of mineral resorbing cells, including osteoclasts (OCL). The purpose of this study was to develop stable apatitic mineral surfaces and determine their influence on OCL formation and mineral resorption from bone marrow macrophages derived from OPN wild-type (OPN+/+) and OPN deficient (OPN-/-) mice. We demonstrated that these mineral coatings were stable and supported bone marrow-derived macrophage differentiation to OCL under our culture conditions. Macrophages harvested from OPN-/- mice had a greater capacity to form OCL than macrophages from OPN+/+ mice when allowed to differentiate on tissue culture plastic. In contrast, when allowed to differentiate on a mineral surface, no difference in OCL formation was observed. Interestingly, OPN+/+ OCL were more efficient at mineral dissolution than OPN-/- OCL, and this difference was observed regardless of differentiating surface. Our results suggest that mineralized substrates as well as ability to synthesize OPN both control OCL function in our model system. The exact nature of these effects may be dependent on variables related to mineral substrate presentation.
机译:磷酸化糖蛋白骨桥蛋白(OPN)在正常和病理条件下参与生物矿化的调节。它的作用包括抑制磷灰石晶体的生长,并促进包括破骨细胞(OCL)在内的矿物质吸收细胞的形成和功能。这项研究的目的是开发稳定的脂蛋白矿物质表面,并确定它们对OCL野生型(OPN + / +)和OPN缺陷(OPN-/-)小鼠骨髓巨噬细胞对OCL形成和矿物质吸收的影响。我们证明了这些矿物涂层在我们的培养条件下是稳定的,并支持了骨髓衍生的巨噬细胞向OCL的分化。当允许在组织培养塑料上分化时,从OPN-/-小鼠中收获的巨噬细胞比从OPN + / +小鼠中获得的巨噬细胞具有更大的形成OCL的能力。相反,当允许在矿物表面上分化时,未观察到OCL形成的差异。有趣的是,OPN + / + OCL在矿物溶解方面比OPN-/-OCL更有效,并且观察到的这种差异与表面的区别无关。我们的结果表明,矿化的底物以及合成OPN的能力都控制了我们模型系统中的OCL功能。这些影响的确切性质可能取决于与矿物底物表现有关的变量。

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