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Osteoblastic differentiation of periodontal ligament stem cells on nonstoichiometric calcium phosphate and titanium surfaces.

机译:非化学计量磷酸钙和钛表面上牙周膜干细胞的成骨细胞分化。

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摘要

Bioactive materials offer particular clinical benefits in the field of dental implantology, where differentiation of stem cells towards an osteoblastic lineage is required for osseointegration and appropriate function of implants in vivo. The aim of this study was to evaluate the osteoblastic response of Stro-1+ve periodontal ligament stem cells (PDLSCs) to three well-characterised biomaterial surfaces: an abraded titanium surface (cpTi) control; a polycrystalline titanium surface, with both micro and nano-topography produced by radio frequency magnetron sputtering (TiTi); and the same surface incorporating a sputter deposited calcium phosphate coating (CaP-TiTi). The CaP-TiTi surfaces were non-stoichiometric, carbonated, and calcium rich with a Ca/P ratio of 1.74. PDLSCs were grown on each surface in the absence of supplementary osteogneic-inducing agents. Osteoblastic responses were assessed for up to 21 days in culture by measuring gene expression using real time q-PCR and via assessment of intracellular alkaline phosphatase (ALP) activity. Gene expression analysis for the CaP-TiTi surfaces showed a significant late stage up-regulation of Secreted Phosphoprotein 1. Additionally, there was a significant up-regulation of the Wnt signalling genes β-catenin and Wnt Family Member 5A on days 14 and 21 respectively for the CaP-TiTi surface. A significant increase in intracellular ALP at day 21 for the CaP-TiTi surface was also observed. These data suggest that the CaP-TiTi surfaces provide the bioactive conditions required for direct osteoblastic differentiation of PDLSCs.
机译:生物活性材料在牙科植入术领域具有特殊的临床益处,在牙科植入术中,骨整合和体内植入物的适当功能需要干细胞向成骨细胞谱系分化。这项研究的目的是评估Stro-1 + ve牙周膜干细胞(PDLSCs)对三个特性良好的生物材料表面的成骨细胞反应:磨损的钛表面(cpTi)对照;多晶钛表面,通过射频磁控溅射(TiTi)产生微观和纳米形貌;和同一表面结合了溅射沉积的磷酸钙涂层(CaP-TiTi)。 CaP-TiTi表面是非化学计量的,碳酸的和富含钙的,Ca / P比为1.74。 PDLSCs在没有补充骨诱导剂的情况下在每个表面上生长。通过使用实时q-PCR测量基因表达并评估细胞内碱性磷酸酶(ALP)活性,评估了成骨细胞反应长达21天。 CaP-TiTi表面的基因表达分析表明,分泌的磷蛋白1在后期显着上调。此外,分别在第14天和第21天,Wnt信号基因β-catenin和Wnt家族成员5A显着上调。用于CaP-TiTi表面。还观察到在第21天,CaP-TiTi表面的细胞内ALP显着增加。这些数据表明,CaP-TiTi表面提供了PDLSCs直接成骨细胞分化所需的生物活性条件。

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