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Odontogenic Differentiation of Human Dental Pulp Stem Cells Stimulated by the Calcium Phosphate Porous Granules

机译:磷酸钙多孔颗粒刺激人牙髓干细胞的牙源性分化

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摘要

Effects of three-dimensional (3D) calcium phosphate (CaP) porous granules on the growth and odontogenic differentiation of human dental pulp stem cells (hDPSCs) were examined for dental tissue engineering. hDPSCs isolated from adult human dental pulps were cultured for 3-4 passages, and populated on porous granules. Cell growth on the culture dish showed an ongoing increase for up to 21 days, whereas the growth on the 3D granules decreased after 14 days. This reduction in proliferative potential on the 3D granules was more conspicuous under the osteogenic medium conditions, indicating that the 3D granules may induce the odontogenic differentiation of hDPSCs. Differentiation behavior on the 3D granules was confirmed by the increased alkaline phosphatase activity, up-regulation of odontoblast-specific genes, including dentin sialophosphoprotein (DSPP) and dentin matrix protein 1 (DMP1) by quantitative polymerase chain reaction, and greater level of dentin sialoprotein synthesis by western blot. Moreover, the cellular mineralization, as assessed by Alizarin red S and calcium quantification, was significantly higher in the 3D CaP granules than in the culture dish. Taken all, the 3D CaP porous granules should be useful for dental tissue engineering in combination with hDPSCs by providing favorable 3D substrate conditions for cell growth and odontogenic development.
机译:针对牙科组织工程,研究了三维(3D)磷酸钙(CaP)多孔颗粒对人牙髓干细胞(hDPSCs)生长和成牙分化的影响。从成年人类牙髓中分离出的hDPSCs培养3-4代,并填充在多孔颗粒上。培养皿上的细胞生长显示持续增长长达21天,而3D颗粒的生长在14天后下降。在成骨培养基条件下,3D颗粒增殖潜力的降低更为明显,表明3D颗粒可能诱导hDPSC的牙源性分化。碱性磷酸酶活性增加,成牙本质细胞特异性基因(包括牙本质唾液磷酸蛋白(DSPP)和牙本质基质蛋白1(DMP1))通过定量聚合酶链反应的上调以及更高水平的牙本质唾液蛋白证实了3D颗粒的分化行为蛋白质印迹法合成。此外,通过茜素红S和钙定量评估,在3D CaP颗粒中的细胞矿化显着高于培养皿。总而言之,通过为细胞生长和牙源性发育提供有利的3D底物条件,与hDPSC结合使用的3D CaP多孔颗粒应可用于牙科组织工程。

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