首页> 外文期刊>Acta biomaterialia >Strontium-containing mesoporous bioactive glass scaffolds with improved osteogenic/cementogenic differentiation of periodontal ligament cells for periodontal tissue engineering
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Strontium-containing mesoporous bioactive glass scaffolds with improved osteogenic/cementogenic differentiation of periodontal ligament cells for periodontal tissue engineering

机译:含锶的介孔生物活性玻璃支架,可改善牙周膜工程的牙周膜细胞的成骨/生胶分化

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To achieve the ultimate goal of periodontal tissue engineering, it is of great importance to develop bioactive scaffolds which can stimulate the osteogenic/cementogenic differentiation of periodontal ligament cells (PDLCs) for the favorable regeneration of alveolar bone, root cementum and periodontal ligament. Strontium (Sr) and Sr-containing biomaterials have been found to induce osteoblast activity. However, there has been no systematic report about the interaction between Sr or Sr-containing biomaterials and PDLCs for periodontal tissue engineering. The aims of this study were to prepare Sr-containing mesoporous bioactive glass (Sr-MBG) scaffolds and investigate whether the addition of Sr could stimulate osteogenic/cementogenic differentiation of PDLCs in a tissue-engineering scaffold system. The composition, microstructure and mesopore properties (specific surface area, nanopore volume and nanopore distribution) of Sr-MBG scaffolds were characterized. The proliferation, alkaline phosphatase (ALP) activity and osteogenesis/cementogenesis-related gene expression (ALP, Runx2, Col I, OPN and CEMP1) of PDLCs on different kinds of Sr-MBG scaffolds were systematically investigated. The results show that Sr plays an important role in influencing the mesoporous structure of MBG scaffolds in which high contents of Sr decreased the well-ordered mesopores as well as their surface area/pore volume. Sr 2+ ions could be released from Sr-MBG scaffolds in a controlled way. The incorporation of Sr into MBG scaffolds has significantly stimulated ALP activity and osteogenesis/cementogenesis-related gene expression of PDLCs. Furthermore, Sr-MBG scaffolds in a simulated body fluid environment still maintained excellent apatite-mineralization ability. The study suggests that the incorporation of Sr into MBG scaffolds is a viable way to stimulate the biological response of PDLCs. Sr-MBG scaffolds are a promising bioactive material for periodontal tissue-engineering applications.
机译:为了达到牙周组织工程的最终目的,开发生物活性支架能够刺激牙周膜细胞(PDLC)的成骨/骨水泥分化,从而促进牙槽骨,牙骨质和牙周膜的良好再生,具有重要的意义。已发现锶(Sr)和含锶的生物材料可诱导成骨细胞活性。但是,还没有关于牙周组织工程中Sr或含Sr的生物材料与PDLC之间相互作用的系统报告。这项研究的目的是制备含Sr的介孔生物活性玻璃(Sr-MBG)支架,并研究添加Sr是否可以刺激组织工程支架系统中PDLC的成骨/胶凝分化。表征了Sr-MBG支架的组成,微观结构和中孔性质(比表​​面积,纳米孔体积和纳米孔分布)。系统地研究了PDLC在不同种类的Sr-MBG支架上的增殖,碱性磷酸酶(ALP)活性和成骨/与骨生成相关的基因表达(ALP,Runx2,Col I,OPN和CEMP1)。结果表明,Sr在影响MBG支架的中孔结构中起着重要作用,其中高含量的Sr降低了有序的中孔及其表面积/孔体积。 Sr 2+离子可以受控方式从Sr-MBG支架中释放出来。将Sr掺入MBG支架中可显着刺激PDLC的ALP活性和成骨/与骨生成相关的基因表达。此外,在模拟的体液环境中,Sr-MBG支架仍保持出色的磷灰石矿化能力。研究表明,将Sr掺入MBG支架中是刺激PDLC生物学反应的可行方法。 Sr-MBG支架是用于牙周组织工程应用的有前途的生物活性材料。

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