首页> 外文期刊>Colloids and Surfaces, B. Biointerfaces >Incorporation of BMP-2 nanoparticles on the surface of a 3D-printed hydroxyapatite scaffold using an epsilon-polycaprolactone polymer emulsion coating method for bone tissue engineering
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Incorporation of BMP-2 nanoparticles on the surface of a 3D-printed hydroxyapatite scaffold using an epsilon-polycaprolactone polymer emulsion coating method for bone tissue engineering

机译:使用用于骨组织工程的ε-聚己内酯聚合物乳液涂布方法,在3D印刷羟基磷灰石支架表面上掺入BMP-2纳米颗粒

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摘要

Hydroxyapatite (HAp)-based three-dimensional (3D) scaffolding is an excellent method for the fabrication of complex-shaped scaffolds to reconstruct bone defects. This study aimed at improving the osteoinductivity and compressive strength of the HAp-based 3D scaffold for bone regeneration. Bone morphogenetic protein-2-loaded nanoparticles (BMP-2/NPs) were prepared by a double emulsion-solvent evaporation method and incorporated onto the surface of 3D scaffolds using epsilon-polycaprolactone (PCL) and NPs emulsion solution. The surface morphology of the scaffold was characterized using scanning electron microscopy and its biocompatibility and osteogenic effects evaluated in vitro using human mesenchymal stem cells. The in vivo bone regeneration efficiency was determined using a rabbit calvarial bone defect model. We obtained 3D HAp scaffolds with NPs using PCL coating process. BMP-2/NPs were uniformly distributed on the scaffold surface and BMP-2 was gradually released. Furthermore, PCL coating improved the compressive strength of the scaffold. The cell proliferation, adhesion, and osteogenic differentiation properties were improved with PCL_BMP-2/NPs coated scaffold. In vivo experiments showed that the formation of new bone was significantly higher in the PCL_BMP-2/NPs group than in the uncoated scaffold-implanted group. The coating method using PCL and NPs emulsion solutions was useful not only to incorporate BMP-2/NPs onto the surface of the scaffold, but also to improve the compressive strength, which enhanced bone regeneration.
机译:基于羟基磷灰石(HAP)的三维(3D)脚手架是制造复合形支架以重建骨缺陷的优异方法。该研究旨在提高基于HAP的3D支架的骨诱导性和抗压强度进行骨再生。通过双乳液 - 溶剂蒸发方法制备骨形态发生蛋白-2负载纳米颗粒(BMP-2 / NPS),并使用ε-聚己内甲烷(PCL)和NPS乳液溶液掺入3D支架的表面上。使用扫描电子显微镜表征支架的表面形态及其生物相容性和使用人间充质干细胞在体外评价的生物相容性和骨质发生效果。使用兔颅骨骨缺陷模型测定体内骨再生效率。我们使用PCL涂布过程获得了NPS的3D Hap支架。 BMP-2 / NPS均匀地分布在支架表面上,BMP-2逐渐释放。此外,PCL涂层改善了支架的抗压强度。用PCL_BMP-2 / NPS涂覆的支架改善细胞增殖,粘附和骨质发生分化性能。在体内实验表明,PCL_BMP-2 / NPS组的新骨形成显着高于未涂覆的支架植入基团。使用PCL和NPS乳液溶液的涂布方法不仅可将BMP-2 / NP掺入支架上,而且还用于提高增强骨再生的抗压强度。

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