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Long term effects of bioactive glass particulates on dental pulp stem cells in vitro

机译:生物活性玻璃微粒对牙髓干细胞的长期影响

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Bioactive glasses (BG) are known for their ability to induce bone formation by the action of their dissolution products. Glasses can deliver active ions at a sustained rate, determined by their composition and surface area. Nanoporous sol-gel derived BGs can biodegrade rapidly, which can lead to a detrimental burst release of ions and a pHrise. The addition of phosphate into the glass can buffer the pH during dissolution. Here, dissolution of BG with composition 60 mol% SiO2, 28 mol% CaO and 12 mol% P2O5 at 600 μg/ml were investigated. Initially, the dissolution and apatite formation of the BG particulates were examined in simulated body fluid using FTIR and XRD. BG particulates were indirectly exposed to dental pulp stem cells, and the effect of 14 days continuous ion release on human dental pulp stem cells (hDPSC) viability and differentiation was evaluated. Alamar blue assay showed that cell proliferation was not inhibited by the continuous release of Ca, P and soluble silica. In fact, hDPSC in the presence of BG particulate displayed a higher density of mineralized nodules than untreated cells, as assessed by Alizarin red. The results will have a great contribution to the in vivo application of this particular BG.
机译:生物活性玻璃(BG)以其溶解产物的作用诱导骨骼形成的能力而闻名。玻璃可以持续释放活性离子,这取决于它们的组成和表面积。纳米多孔溶胶-凝胶衍生的BG可以快速生物降解,这可能导致有害的离子爆炸释放和pH上升。向玻璃中添加磷酸盐可以在溶解过程中缓冲pH值。在此,研究了以600μg/ ml的成分组成为60 mol%SiO2、28 mol%CaO和12 mol%P2O5的BG的溶解情况。最初,使用FTIR和XRD在模拟的体液中检查了BG颗粒的溶解和磷灰石形成。 BG颗粒间接暴露于牙髓干细胞,并评估了连续14天离子释放对人牙髓干细胞(hDPSC)活力和分化的影响。 Alamar蓝分析表明,Ca,P和可溶性二氧化硅的连续释放不会抑制细胞增殖。实际上,通过茜素红评估,在存在BG颗粒的情况下,hDPSC的矿化结节密度高于未处理的细胞。结果将对该特定BG的体内应用做出巨大贡献。

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