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Odontogenic differentiation and dentin formation of dental pulp cells under nanobioactive glass induction

机译:纳米生物玻璃诱导下牙髓细胞的成牙分化和牙本质形成

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Bioactive glass (BG) has been widely used in bone regeneration; however, reports on the biological effects of BG on dental pulp cells are rare. This study aims to investigate the effects of nanoscale BG (n-BG) on odontogenic differentiation and dentin formation of dental pulp cells and to compare these effects with those of microscale BG (m-BG). Human dental pulp cells (hDPCs) from third molars were cultured directly with m-BG and n-BG in vitro. The cell proliferation increased at 0.1 mg ml-1 BG, which also had a chemotactic effect on hDPCs. The mineralization capacity and expression of odontogenic-related proteins and genes (dentin sialophosphoprotein, dentin matrix protein 1 and collagen type I) of hDPCs were significantly up-regulated under BG induction, and were particularly higher in the n-BG group than in the control group. m-BG and n-BG combined with pulp tissues were transplanted into the dorsum of immunodeficient mice to observe their biological effects on dental pulp cells in vivo. A continuous layer of dentin-like tissue with uniform thickness, a well-organized dentinal tubule structure and polarizing odontoblast-like cells aligned along it was generated upon the n-BG layer, whereas some irregular sporadic osteodentin-like mineralized tissues were observed in the control group. This study reveals that BG, especially n-BG, induces the odontogenic differentiation and dentin formation of dental pulp cells and may serve as a potential material for pulp repair and dentin regeneration.
机译:生物活性玻璃(BG)已被广泛用于骨骼再生。然而,关于BG对牙髓细胞生物学作用的报道很少。这项研究旨在研究纳米级BG(n-BG)对牙髓细胞的牙源性分化和牙本质形成的影响,并将这些影响与微米级BG(m-BG)进行比较。将来自第三磨牙的人牙髓细胞(hDPC)直接与m-BG和n-BG体外培养。细胞增殖在0.1 mg ml-1 BG时增加,这也对hDPC具有趋化作用。在BG诱导下,hDPCs的牙本质相关蛋白和基因(牙本质唾液磷蛋白,牙本质基质蛋白1和I型胶原)的矿化能力和表达显着上调,并且在n-BG组中特别高于对照组。组。将m-BG和n-BG结合牙髓组织移植到免疫缺陷小鼠的背部,观察其对体内牙髓细胞的生物学作用。在n-BG层上生成了一层连续的,厚度均匀,牙本质小管结构良好的牙本质小管结构和沿其排列的极化成牙本质细胞样细胞的连续层,而在该组织中观察到一些不规则的散在的骨牙本质样矿化组织。控制组。这项研究表明,BG,尤其是n-BG,可以诱导牙髓细胞的牙源性分化和牙本质的形成,并且可以作为牙髓修复和牙本质再生的潜在材料。

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