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首页> 外文期刊>Journal of biomaterials and tissue engineering >A Sulfated Nanofibrous Mesh Supporting the Osteogenic Differentiation of Periosteum-Derived Cells
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A Sulfated Nanofibrous Mesh Supporting the Osteogenic Differentiation of Periosteum-Derived Cells

机译:硫酸化纳米纤维网,支撑骨膜衍生细胞的成骨分化

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摘要

The periosteum is a thin fibrous membrane covering the surface of long bone and is known to play a critical role in bone development and adult bone fracture healing. Loss or damage of the periosteum tissue from traumatic long bone injuries can lead to retarded healing of bone graft-mediated repair. The regenerative potential of periosteum-derived progenitor cells (PDCs) has inspired their use as an alternative to bone marrow-derived mesenchymal stromal cells (MSCs) to augment scaffold-assisted bone repair. In this study, we first demonstrated that PDCs isolated from adult rat long bone exhibited innate advantages over bone marrow-derived MSCs in terms of faster proliferation and more potent osteogenic differentiation upon induction in plastic-adherent culture. Further, we examined the potential of two electrospun nanofibrous meshes, an uncharged regenerated cellulose mesh and a sulfated mesh, to support the attachment and osteogenic differentiation of PDCs. We showed that both nanofibrous meshes were able to support the attachment and proliferation of PDCs and MSCs alike, with the sulfated mesh enabling significantly higher seeding efficiency than the cellulose mesh. Both meshes were also able to support the osteogenic differentiation of adherent PDCs upon induction by osteogenic media, with the sulfated mesh facilitating more potent mineral deposition by adherent PDCs. Our study supports the sulfated nanofibrous mesh as a promising synthetic periosteal membrane for the delivery of exogenous PDCs to augment bone healing.
机译:骨膜是覆盖长骨表面的薄纤维膜,已知在骨发育和成人骨折愈合中发挥关键作用。来自创伤性长骨损伤的骨膜组织的损失或损伤可导致骨移植介导的修复的延迟愈合。近骨衍生的祖细胞(PDC)的再生潜力激发了它们用作骨髓衍生的间充质基质细胞(MSCs)的替代方法,以增加支架辅助骨修复。在这项研究中,我们首先表明从成年大鼠长骨中分离的PDC在塑料粘附培养物诱导时的增殖和更有效的骨质发生分化方面表现出对骨髓衍生的MSC的先天优势。此外,我们检查了两个电纺纳米纤维网,不带电再生纤维素网和硫酸化网的电位,以支持PDC的附着和骨质发生分化。我们表明,纳米纤维网格都能够支持PDC和MSCs的附着和增殖,硫酸化网格能够明显高于纤维素网的播种效率。两种网格也能够通过粘附PDC促进更有效的矿物沉积,支持粘附剂PDC在诱导时支持粘附PDC在诱导时进行血栓分化。我们的研究支持硫酸化纳米纤维网,作为有希望的合成骨膜膜,用于递送外源性PDC以增加骨愈合。

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