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Differentiation of Dental Pulp Stem Cells on Gutta-Percha Scaffolds

机译:牙胶-Percha支架上牙髓干细胞的分化

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Advances in treatment of tooth injury have shown that tooth regeneration from the pulp was a viable alternative of root canal therapy. In this study, we demonstrated that Gutta-percha, nanocomposites primarily used for obturation of the canal, are not cytotoxic and can induce differentiation of dental pulp stem cells (DPSC) in the absence of soluble mediators. Flat scaffolds were obtained by spin coating Si wafers with three Gutta-percha compounds: GuttaCore?, ProTaper?, and Lexicon?. The images of annealed surfaces showed that the nanoparticles were encapsulated, forming surfaces with root mean square (RMS) roughness of 136–211 nm. Then, by culturing DPSC on these substrates we found that after some initial difficulty in adhesion, confluent tissues were formed after 21 days. Imaging of the polyisoprene (PI) surfaces showed that biomineral deposition only occurred when dexamethasone was present in the media. Spectra obtained from the minerals was consistent with that of hydroxyapatite (HA). In contrast, HA deposition was observed on all Gutta-percha scaffolds regardless of the presence or absence of dexamethasone, implying that surface roughness may be an enabling factor in the differentiation process. These results indicate that Gutta-percha nanocomposites may be good candidates for pulp regeneration therapy.
机译:牙齿损伤治疗的进展表明,牙髓的牙齿再生是根管治疗的可行替代方法。在这项研究中,我们证明了Gutta-percha纳米复合材料(主要用于堵塞运河)没有细胞毒性,可以在没有可溶性介体的情况下诱导牙髓干细胞(DPSC)分化。通过用三种Gutta-percha化合物(GuttaCore ?、 ProTaper?和Lexicon?)旋涂Si晶片来获得扁平支架。退火表面的图像显示纳米颗粒被包封,形成的表面的均方根(RMS)粗糙度为136-211 nm。然后,通过在这些基质上培养DPSC,我们发现在最初的粘附困难之后,在21天后形成了融合组织。聚异戊二烯(PI)表面的成像显示,仅当地塞米松存在于培养基中时,才会发生生物矿物沉积。从矿物中获得的光谱与羟基磷灰石(HA)的光谱一致。相比之下,无论是否存在地塞米松,在所有Gutta-percha支架上均观察到HA沉积,这表明表面粗糙度可能是分化过程中的促成因素。这些结果表明,Gutta-percha纳米复合材料可能是纸浆再生治疗的良好候选者。

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