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Modification of 3D printed PCL scaffolds by PVAc and HA to enhance cytocompatibility and osteogenesis

机译:通过PVAC和HA改变3D印刷PCL支架,增强细胞组分和骨质发生

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摘要

In the study, a specific material system that contains poly-(ε-caprolactone) (PCL), polyvinyl acetate (PVAc) and hydroxyapatite (HA) was used to fabricate porous scaffolds employing a 3D printing technique for bone regeneration. Four groups of 3D printing scaffolds were fabricated: PCL, PCL/PVAc, PCL/HA and PCL/PVAc/HA for comparision. The morphologies, mechanical properties and biological characteristics of these scaffolds were analyzed using SEM, a material testing machine, in vitro cell culture and in vivo animal experiments. The results showed that these 3D printed scaffolds possessed porous channel structures with a hole size of 375–475 μm and porosity of 74.1–76.1%. The compressive moduli of the scaffolds increased with the addition of HA and decreased with the addition of PVAc. The PCL/PVAc/HA scaffold exhibited higher cell proliferation and bone formation rates than other groups ( p < 0.001), which could be attributed to the synergistic effect of PAVc and HA components. Two types of new bone formation patterns in the scaffold were found in this study: one is the new bone formed directly on the grid matrix, and the other is the new bone initially formed in the center of the scaffold channel and then remolded to concentric circles. The osteogenesis pattern of the latter is analogous to the osteon structure of a cortical bone. The 3D printed scaffold based on PCL/PVAc/HA tri-component system is a promising prospect for future individualized bone repair applications.
机译:在该研究中,使用含有聚 - (ε-己内酯)(PCL),聚乙酸乙烯酯(PVAC)和羟基磷灰石(HA)的特定材料系统来制造采用3D印刷技术进行骨再生的多孔支架。制造四组3D打印支架:PCL,PCL / PVAC,PCL / HA和PCL / PVAC / HA进行比较。使用SEM,材料试验机,体外细胞培养和体内动物实验分析这些支架的形态,机械性能和生物学特性。结果表明,这些3D印刷支架具有孔尺寸为375-475μm的多孔通道结构,孔隙率为74.1-76.1%。支架的压缩模量随着HA的添加而增加,并随着添加PVAC而降低。 PCL / PVAC / HA支架表现出比其他基团更高的细胞增殖和骨形成率(P <0.001),其可归因于PAVC和HA组分的协同效应。在该研究中发现了支架中的两种新的骨形成图案:一个是直接形成在网格基质上的新骨,另一个是最初形成在支架通道的中心的新骨,然后倒置成同心圆。后者的成骨图案类似于皮质骨的Osteon结构。基于PCL / PVAC / HA三组件系统的3D印刷支架是未来个性化骨修复应用的有希望的前景。

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