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首页> 外文期刊>The Saudi Dental Journal >Assessment of the effect of silica calcium phosphate nanocomposite on mesenchymal stromal cell differentiation and bone regeneration in critical size defect
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Assessment of the effect of silica calcium phosphate nanocomposite on mesenchymal stromal cell differentiation and bone regeneration in critical size defect

机译:磷酸钙纳米复合材料对临界尺寸缺陷中磷酸钙纳米复合物对临界缺陷中骨质基质细胞分化和骨再生的评价

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摘要

ObjectiveThe research was designed to assess silica calcium phosphate nanocomposite (SCPC) biocompatibility and bioactivity as an osteoinductive scaffold and cell carrier. Consequently, the ability of cell seeded SCPC implant to regenerate a critical size defect in rat calvarium.Materials and MethodsThe study was conducted in two parts. A series of in vitro experiments on bone marrow stromal cells (MSCs) seeded in the SCPC scaffold evaluated cell attachment, proliferation and osteogenic differentiation. In the second part, a cell seeded SCPC construct was implanted in rat calvarium and bone regeneration was assessed by histological examination to evaluate the newly formed bone quality and the residual graft volume.ResultsIn vitro experimentation revealed that MSCs cultured on SCPC maintained viability and proliferation when seeded into the SCPC. Scanning electron microscopy demonstrated cell adhesion and calcium appetite formation, MSCs differentiated towards the osteogenic lineage as indicated by the upregulation of RUNX2, ALP, Col1a1 markers. Histological examination showed regeneration from the periphery and core of the defect with new bone formation at different stages of maturation.ConclusionRegenerative medicine delivers promising solutions and technologies for application in craniofacial reconstruction. SCPC scaffold has the potential to be used as a cell carrier to achieve stem cell-based bone regeneration, which provides a viable alternative for treatment of challenging critical size defect.
机译:客观的研究设计用于评估二氧化硅磷酸钙纳米复合材料(SCPC)生物相容性和作为骨诱导支架和细胞载体的生物活性。因此,细胞种子SCPC植入物在大鼠Calvarium.materials和方法中再生临界大小缺陷的能力在两部分中进行。在SCPC支架中培养的骨髓间基质细胞(MSCs)的一系列体外实验评估了细胞附着,增殖和骨质发生分化。在第二部分中,在大鼠钙钙中植入细胞种子SCPC构建体,通过组织学检查评估骨再生,以评估新形成的骨质和残余接枝体积。培养体外实验表明,在SCPC培养的MSC保持活力和增殖种子进入SCPC。扫描电子显微镜显微镜显示细胞粘附和钙食欲地层,MSCs与Runx2,AlP,COL1A1标记的上调所示的表明朝向骨质发生谱系。组织学检查显示出在成熟的不同阶段的新骨形成的外周和核心的再生。结论重本医学,提供有希望的解决方案和技术,用于在颅面重建中的应用。 SCPC支架具有用作细胞载体以实现干细胞基骨再生的可能性,这提供了一种可行的替代方法,用于治疗挑战临界尺寸缺陷。

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