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Odontoblast-like differentiation and mineral formation of pulpsphere derived cells on human root canal dentin in vitro

机译:在体外人根管牙本质蛋白上的豆荚衍生细胞的异藤细胞样和矿物质形成

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The revitalization or regeneration of the dental pulp is a preferable goal in current endodontic research. In this study, human dental pulp cell (DPC) spheres were applied to human root canal samples to evaluate their potential adoption for physiological tissue-like regeneration of the dental root canal by odontoblastic differentiation as well as cell-induced mineral formation. DPC were cultivated into three-dimensional cell spheres and seeded on human root canal specimens. The evaluation of sphere formation, tissue-like behavior and differentiation as well as mineral formation of the cells was carried out with the aid of optical light microscopy, immunohistochemical staining and scanning electron microscopy (SEM). Spheres and cells migrated out of the spheres showed an intense cell-cell- and cell-dentin-contact with the formation of extra cellular matrix. In addition, the ingrowth of cell processes into dentinal tubules and the interaction of cell processes with the tubule walls were detected by SEM-imaging. Immunohistochemical staining of the odontoblast specific matrix proteins, dentin matrix protein-1, and dentin sialoprotein revealed an odontoblast-like cell differentiation in contact with the dentin surface. This differentiation was confirmed by SEM-imaging of cells with an odontoblast specific phenotype and cell induced mineral formation. The results of the present study reveal the high potential of pulp cells organized in spheres for dental tissue engineering. The odontoblast-like differentiation and the cell induced mineral formation display the possibility of a complete or partial "dentinal filling" of the root canal and the opportunity to combine this method with other current strategies.
机译:牙髓的振兴或再生是目前牙髓研究的优选目标。在该研究中,将人牙髓细胞(DPC)球体施用于人根部管罐样品中,以评估它们通过Odontobolas弹性分化以及细胞诱导的矿物质形成牙根管的生理组织样再生的潜在采用。将DPC培养成三维细胞球,并播种在人根部管道标本上。通过光学光学光学光学光学光学光学光学光学显微镜,免疫组织化学染色和扫描电子显微镜(SEM)对球形形成,组织样行为和分化以及细胞的矿物质形成。从球体中迁移的球体和细胞显示出强烈的细胞 - 细胞和细胞 - 牙本质接触与额外细胞基质的形成。另外,通过SEM成像检测细胞过程的暗管过程和细胞过程的相互作用和细胞过程的相互作用。 Odontoblast特异性基质蛋白,牙本质基质蛋白-1和牙本质唾液酸的免疫组织化学染色显示出与牙本质表面接触的异藤细胞样细胞分化。通过用异常特异性表型和细胞诱导的矿物质形成细胞的细胞进行SEM成像来确认这种分化。本研究的结果揭示了用于牙科组织工程的球体中有组合的纸浆细胞的高潜力。异藤细胞样分化和细胞诱导的矿物质形成显示根管的完整或部分“牙本质填充”的可能性以及将该方法与其他当前策略结合的机会。

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