首页> 外文期刊>Stem cells translational medicine. >Priming Dental Pulp Stem Cells from Human Exfoliated Deciduous Teeth with Fibroblast Growth Factor‐2 Enhances Mineralization Within Tissue‐Engineered Constructs Implanted in Craniofacial Bone Defects
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Priming Dental Pulp Stem Cells from Human Exfoliated Deciduous Teeth with Fibroblast Growth Factor‐2 Enhances Mineralization Within Tissue‐Engineered Constructs Implanted in Craniofacial Bone Defects

机译:用成纤维细胞生长因子2刺激人脱落乳牙中的牙髓干细胞增强植入颅面骨缺损的组织工程构造中的矿化作用。

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The craniofacial area is prone to trauma or pathologies often resulting in large bone damages. One potential treatment option is the grafting of a tissue‐engineered construct seeded with adult mesenchymal stem cells (MSCs). The dental pulp appears as a relevant source of MSCs, as dental pulp stem cells display strong osteogenic properties and are efficient at bone formation and repair. Fibroblast growth factor‐2 (FGF‐2) and/or hypoxia primings were shown to boost the angiogenesis potential of dental pulp stem cells from human exfoliated deciduous teeth (SHED). Based on these findings, we hypothesized here that these primings would also improve bone formation in the context of craniofacial bone repair. We found that both hypoxic and FGF‐2 primings enhanced SHED proliferation and osteogenic differentiation into plastically compressed collagen hydrogels, with a much stronger effect observed with the FGF‐2 priming. After implantation in immunodeficient mice, the tissue‐engineered constructs seeded with FGF‐2 primed SHED mediated faster intramembranous bone formation into critical size calvarial defects than the other groups (no priming and hypoxia priming). The results of this study highlight the interest of FGF‐2 priming in tissue engineering for craniofacial bone repair.
机译:颅面区域容易受到创伤或病变,经常导致大的骨损伤。一种潜在的治疗选择是移植植入成人间充质干细胞(MSC)的组织工程化构建体。牙髓似乎是MSC的相关来源,因为牙髓干细胞显示出强大的成骨特性,并且在骨形成和修复方面非常有效。已证明成纤维细胞生长因子2(FGF-2)和/或低氧引发可增强人脱落乳牙(SHED)牙髓干细胞的血管生成潜力。基于这些发现,我们在这里假设这些引发也会在颅面骨修复的背景下改善骨形成。我们发现低氧和FGF-2引发均可增强SHED增殖和成骨分化为可塑性压缩的胶原水凝胶,而FGF-2引发的效果更强。植入免疫缺陷小鼠后,用FGF-2引发的SHED接种的组织工程化构建体比其他组更快地介导了膜内骨形成为临界大小的颅骨缺损(无引发和低氧引发)。这项研究的结果突出了FGF-2引发在颅面骨修复组织工程中的兴趣。

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