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应用于钛表面的成骨诱导性磷酸钙纳米颗粒前体。

Osteogenesis-inducing calcium phosphate nanoparticle precursors applied to titanium surfaces.

机构信息

Department of Chemical and Biological Engineering, Chalmers University of Technology, Gothenburg, Sweden.

出版信息

Biomed Mater. 2013 Jun;8(3):035007. doi: 10.1088/1748-6041/8/3/035007. Epub 2013 Apr 5.

Abstract

This study investigated the effects of the morphology and physicochemical properties of calcium phosphate (CaP) nanoparticles on osteogenesis. Two types of CaP nanoparticles were compared, namely amorphous calcium phosphate (ACP) nano-spheres (diameter: 9-13 nm) and poorly crystalline apatite (PCA) nano-needles (30-50 nm × 2-4 nm) that closely resemble bone apatite. CaP particles were spin-coated onto titanium discs and implants; they were evaluated in cultured mouse calvarial osteoblasts, as well as after implantation in rabbit femurs. A significant dependence of CaP coatings was observed in osteoblast-related gene expression (Runx2, Col1a1 and Spp1). Specifically, the PCA group presented an up-regulation of the osteospecific genes, while the ACP group suppressed the Runx2 and Col1a1 expression when compared to blank titanium substrates. Both the ACP and PCA groups presented a more than three-fold increase of calcium deposition, as suggested by Alizarin red staining. The removal torque results implied a slight tendency in favour of the PCA group. Different forms of CaP nanostructures presented different biologic differences; the obtained information can be used to optimize surface coatings on biomaterials.

摘要

本研究探讨了磷酸钙(CaP)纳米粒子的形态和物理化学性质对成骨的影响。比较了两种类型的 CaP 纳米粒子,即无定形磷酸钙(ACP)纳米球(直径:9-13nm)和类似骨磷灰石的非晶态磷灰石(PCA)纳米针(30-50nm×2-4nm)。将 CaP 颗粒旋涂到钛盘和植入物上;在培养的小鼠颅顶骨成骨细胞中以及在兔股骨中植入后对其进行了评估。在成骨细胞相关基因表达(Runx2、Col1a1 和 Spp1)方面观察到 CaP 涂层的显著依赖性。具体而言,与空白钛基底相比,PCA 组中骨特异性基因的表达上调,而 ACP 组则抑制了 Runx2 和 Col1a1 的表达。茜素红染色表明,ACP 和 PCA 组的钙沉积增加了三倍以上。去除扭矩结果表明 PCA 组略有优势。不同形式的 CaP 纳米结构表现出不同的生物学差异;所得信息可用于优化生物材料表面涂层。

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