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首页> 外文期刊>BioMed research international >The Osteogenesis of Bone Marrow Stem Cells on mPEG-PCL-mPEG/Hydroxyapatite Composite Scaffold via Solid Freeform Fabrication
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The Osteogenesis of Bone Marrow Stem Cells on mPEG-PCL-mPEG/Hydroxyapatite Composite Scaffold via Solid Freeform Fabrication

机译:固体自由形式制备mPEG-PCL-mPEG /羟基磷灰石复合支架上骨髓干细胞的成骨作用

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摘要

The study described a novel bone tissue scaffold fabricated by computer-aided, air pressure-aided deposition system to control the macro- and microstructure precisely. The porcine bone marrow stem cells (PBMSCs) seeded on either mPEG-PCL-mPEG (PCL) or mPEG-PCL-mPEG/hydroxyapatite (PCL/HA) composite scaffold were cultured under osteogenic medium to test the ability of osteogenesisin vitro. The experimental outcomes indicated that both scaffolds possessed adequate pore size, porosity, and hydrophilicity for the attachment and proliferation of PBMSCs and the PBMSCs expressed upregulated genes of osteogensis and angiogenesis in similar manner on both scaffolds. The major differences between these two types of the scaffolds were the addition of HA leading to higher hardness of PCL/HA scaffold, cell proliferation, and VEGF gene expression in PCL/HA scaffold. However, thein vivobone forming efficacy between PBMSCs seeded PCL and PCL/HA scaffold was different from thein vitroresults. The outcome indicated that the PCL/HA scaffold which had bone-mimetic environment due to the addition of HA resulted in better bone regeneration and mechanical strength than those of PCL scaffold. Therefore, providing a bone-mimetic scaffold is another crucial factor for bone tissue engineering in addition to the biocompatibility, 3D architecture with high porosity, and interpored connection.
机译:该研究描述了一种新型的骨组织支架,该支架由计算机辅助的气压辅助沉积系统制成,可以精确地控制宏观和微观结构。在成骨培养基上培养接种在mPEG-PCL-mPEG(PCL)或mPEG-PCL-mPEG /羟基磷灰石(PCL / HA)复合支架上的猪骨髓干细胞(PBMSC),以测试体外成骨的能力。实验结果表明,两种支架都具有足够的孔径,孔隙率和亲水性,用于PBMSC的附着和增殖,并且PBMSC在两种支架上均以相似的方式表达了成骨基因和血管生成的上调基因。这两类支架之间的主要区别是添加HA导致PCL / HA支架的硬度更高,细胞增殖以及PCL / HA支架中的VEGF基因表达。然而,接种PCL和PCL / HA支架的PBMSC之间的体内骨形成功效与体外结果不同。结果表明,由于添加了HA而具有仿骨环境的PCL / HA支架比PCL支架具有更好的骨骼再生和机械强度。因此,除了具有生物相容性,具有高孔隙率的3D架构和内孔连接之外,提供仿骨支架是骨组织工程设计的另一个关键因素。

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