首页> 美国卫生研究院文献>Scientific Reports >Promoting Induced Pluripotent Stem Cell-driven Biomineralization and Periodontal Regeneration in Rats with Maxillary-Molar Defects using Injectable BMP-6 Hydrogel
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Promoting Induced Pluripotent Stem Cell-driven Biomineralization and Periodontal Regeneration in Rats with Maxillary-Molar Defects using Injectable BMP-6 Hydrogel

机译:使用可注射的BMP-6水凝胶促进上颌磨牙缺损大鼠的诱导多能干细胞驱动的生物矿化和牙周再生

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摘要

Periodontal disease may cause considerable destruction of alveolar bone, periodontal ligaments (PDLs) and cementum and even lead to progressive oral dysfunction. Periodontal tissue regeneration is the ultimate goal of periodontal disease treatment to reconstruct both structures and functions. However, the regenerative efficiency is low, possibly due to the lack of a proper periodontal microenvironment. In this study, we applied an injectable and thermosensitive chitosan/gelatin/glycerol phosphate hydrogel to provide a 3D environment for transplanted stem cells and to enhance stem cell delivery and engraftment. The iPSCs-BMP-6-hydrogel complex promoted osteogenesis and the differentiation of new connective tissue and PDL formation. In animal models of maxillary-molar defects, the iPSCs-BMP-6-hydrogel-treated group showed significant mineralization with increased bone volume, trabecular number and trabecular thickness. Synergistic effects of iPSCs and BMP-6 increased both bone and cementum formation. IPSCs-BMP-6-hydrogel-treated animals showed new bone synthesis (increased ALP- and TRAP-positive cells), new PDL regeneration (shown through Masson’s trichrome staining and a qualification assay), and reduced levels of inflammatory cytokines. These findings suggest that hydrogel-encapsulated iPSCs combined with BMP-6 provide a new strategy to enhance periodontal regeneration. This combination not only promoted stem cell-derived graft engraftment but also minimized the progress of inflammation, which resulted in highly possible periodontal regeneration.
机译:牙周疾病可能会导致牙槽骨,牙周膜(PDL)和牙骨质的严重破坏,甚至导致进行性口腔功能障碍。牙周组织再生是牙周疾病治疗重建结构和功能的最终目标。但是,再生效率低,可能是由于缺乏适当的牙周微环境。在这项研究中,我们应用了可注射的热敏性壳聚糖/明胶/甘油磷酸水凝胶,为移植的干细胞提供3D环境,并增强了干细胞的递送和植入。 iPSCs-BMP-6-水凝胶复合物促进成骨作用以及新的结缔组织和PDL形成的分化。在上颌磨牙缺损的动物模型中,iPSCs-BMP-6-水凝胶治疗组显示出明显的矿化作用,其骨体积,小梁数目和小梁厚度增加。 iPSC和BMP-6的协同作用增加了骨骼和牙骨质的形成。经IPSCs-BMP-6-水凝胶处理的动物表现出新的骨骼合成(增加了ALP和TRAP阳性细胞),新的PDL再生(通过Masson的三色染色和鉴定试验显示),并降低了炎性细胞因子的水平。这些发现表明水凝胶封装的iPSC与BMP-6结合提供了一种增强牙周再生的新策略。这种结合不仅促进了干细胞来源的移植物的植入,而且使炎症的进展减至最小,这导致牙周​​再生的可能性很高。

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