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首页> 外文期刊>Turkish journal of biology >In vitro tooth-shaped scaffold construction by mimicking late bell stage
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In vitro tooth-shaped scaffold construction by mimicking late bell stage

机译:通过模仿晚钟阶段体外齿形支架结构

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摘要

Neogenesis of osseous and ligamentous interfacial structures is essential for the regeneration of large oral or craniofacial defects. However, current treatment strategies are inadequate in renewing supporting tissues of teeth after trauma, chronic infections or surgical resection. Combined use of 3D scaffolds with stem cells became a promising treatment option for these injuries. Matching different scaffolding materials with different tissues can induce the correct cytokines and the differentiation of cells corresponding to that particular tissue. In this study, a hydroxyapatite (HA) based scaffold was used together with human adipose stem cells (hASCs), human bone marrow stem cells (hBMSCs) and gingival epithelial cells to mimic human tooth dentin-pulp-enamel tissue complexes and model an immature tooth at the late bell stage in vitro. Characteristics of the scaffold were determined via SEM, FTIR, pore size and density measurements. Changes in gene expression, protein secretions and tissue histology resulting from cross-interactions of different dental tissues grown in the system were shown. Classical tooth tissues such as cementum, pulp and bone like tissues were formed within the scaffold. Our study suggests that a HA-based scaffold with different cell lineages can successfully mimic early stages of tooth development and can be a valuable tool for hard tissue engineering.
机译:骨质和韧带界面结构的新发生对于大口腔或颅面缺陷的再生至关重要。然而,目前的治疗策略在创伤后的牙齿,慢性感染或手术切除后更新牙齿的组织不足。将3D支架与干细胞的结合使用成为这些伤害的有希望的治疗选择。将不同的脚手架材料与不同组织匹配可以诱导正确的细胞因子和对应于该特定组织的细胞的分化。在该研究中,将基于羟基磷灰石(HA)的支架与人脂肪干细胞(HASC),人骨髓干细胞(HBMSCS)和牙龈上皮细胞一起使用,以模仿人牙齿牙本质 - 纸浆组织复合物和模型不成熟牙齿在贝尔舞台上的牙齿体外。通过SEM,FTIR,孔径和密度测量测定支架的特性。显示了在系统中生长的不同牙科组织的交叉相互作用引起的基因表达的变化,蛋白质分泌物和组织组织学。在支架内形成静态牙齿组织如豆类,纸浆和骨骼。我们的研究表明,具有不同细胞谱系的基于HA基脚手架可以成功模仿牙齿发育的早期阶段,并且可以是硬组织工程的有价值的工具。

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