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Biomimetic oyster shell–replicated topography alters the behaviour ofhuman skeletal stem cells

机译:仿生牡蛎壳复制的地形改变了行为人骨骼干细胞

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摘要

The regenerative potential of skeletal stem cells provides an attractive prospect to generate bone tissue needed for musculoskeletal reparation. A central issue remains efficacious, controlled cell differentiation strategies to aid progression of cell therapies to the clinic. The nacre surface from Pinctada maxima shells is known to enhance bone formation. However, to date, there is a paucity of information on the role of the topography of P. maxima surfaces, nacre and prism. To investigate this, nacre and prism topographical features were replicated onto polycaprolactone and skeletal stem cell behaviour on the surfaces studied. Skeletal stem cells on nacre surfaces exhibited an increase in cell area, increase in expression of osteogenic markers ALP (p < 0.05) and OCN (p < 0.01) and increased metabolite intensity (p < 0.05), indicating a role of nacre surface to induce osteogenic differentiation, while on prism surfaces, skeletal stem cells did not show alterations in cell area or osteogenic marker expression and a decrease in metabolite intensity (p < 0.05), demonstrating a distinctrole for the prism surface, with the potential to maintain the skeletal stemcell phenotype.
机译:骨骼干细胞的再生潜力为产生肌肉骨骼修复所需的骨组织提供了诱人的前景。一个重要的问题仍然是有效的,受控的细胞分化策略,以帮助细胞疗法发展到临床。已知Pinctada maxima贝壳的珍珠质表面可增强骨骼形成。然而,迄今为止,关于最大体育表面,珍珠层和棱柱形的地形的作用的信息很少。为了对此进行研究,将珍珠质和棱柱形的地形特征复制到聚己内酯上,并在研究的表面上显示骨骼干细胞的行为。珍珠质表面的骨骼干细胞表现出细胞面积增加,成骨标志物ALP(p <0.05)和OCN(p <0.01)表达增加以及代谢物强度增加(p <0.05),表明珍珠母面具有诱导成骨分化,而在棱柱表面,骨骼干细胞未显示出细胞面积或成骨标志物表达的改变,代谢产物强度降低(p <0.05),表明了棱镜表面的作用,具有维持骨骼干的潜力细胞表型。

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