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Mineralization Induction Effects of Osteopontin Bone Sialoprotein and Dentin Phosphoprotein on a Biomimetic Collagen Substrate

机译:骨桥蛋白骨髓蛋白和牙本质磷蛋白对仿生胶原基质的矿化诱导效应

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摘要

Native bone tissue is composed of a matrix of collagen, non-collagenous proteins, and calcium phosphate minerals, which are primarily hydroxyapatite (HA). The SIBLING (small integrin-binding ligand, N-linked glycoprotein) family of proteins is the primary non-collagenous protein group found in mineralized tissues. In this work, the mineralization induction capabilities of three of the SIBLING members, bone sialoprotein (BSP), osteopontin (OPN), and the calcium binding subdomain of dentin sialophosphoprotein, dentin phosphoprotein (DPP), are directly compared on a biomimetic collagen substrate. A self-assembled, loosely aligned collagen fibril substrate was prepared and then 125I radiolabeled adsorption isotherms were developed for BSP, OPN, and DPP. The results showed that BSP exhibited the highest binding capacity for collagen at lower concentrations, followed by DPP and OPN. However, at the highest concentrations all three proteins had similar adsorption levels. The adsorption isotherms were then used to identify conditions that resulted in identical amounts of adsorbed protein. These substrates were prepared and placed in simulated body fluid for 5 hours, 10 hours, and 24 hours at 37°C. The resulting mineral morphology was assessed by atomic force microscopy and the composition was determined using photochemical assays. Mineralization was seen in the presence of all of the proteins. However, DPP was seen to be the only protein that formed individual mineral nodules similar to those seen in developing bone. This suggests that DPP plays a significant role in the biomineralization process and that the incorporation of DPP into tissue engineering constructs may facilitate the induction of biomimetic mineral formation.
机译:天然骨组织由胶原蛋白,非胶原蛋白和磷酸钙矿物质(主要是羟基磷灰石(HA))组成。蛋白质的SIBLING(小整合素结合配体,N-连接的糖蛋白)家族是矿化组织中发现的主要非胶原蛋白。在这项工作中,直接在仿生胶原蛋白基质上比较了SIBLING成员中三个的骨矿化诱导能力,即骨唾液蛋白(BSP),骨桥蛋白(OPN)和牙本质唾液磷蛋白,牙本质磷蛋白(DPP)的钙结合亚结构域。制备了自组装的,疏松排列的胶原原纤维底物,然后开发了Bs,OPN和DPP的 125 I放射性标记的吸附等温线。结果表明,BSP在较低浓度下对胶原蛋白的结合能力最高,其次是DPP和OPN。但是,在最高浓度下,所有三种蛋白质均具有相似的吸附水平。然后将吸附等温线用于鉴定导致相同量的吸附蛋白的条件。制备这些底物并在37℃下放置在模拟体液中5小时,10小时和24小时。通过原子力显微镜评估所得的矿物形态,并使用光化学测定法确定组成。所有蛋白质均存在矿化现象。但是,DPP被认为是形成与发育中的骨骼相似的单个矿物质小结的唯一蛋白质。这表明DPP在生物矿化过程中起着重要作用,并且将DPP掺入组织工程构造中可能有助于诱导仿生矿物质的形成。

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