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Development of a biomimetic collagen-hydroxyapatite scaffold for bone tissue engineering using a SBF immersion technique.

机译:使用SBF浸没技术开发用于骨组织工程的仿生胶原蛋白-羟基磷灰石支架。

摘要

The objective of this study was to develop a biomimetic, highly porous collagen-hydroxyapatite (HA) composite scaffold for bone tissue engineering (TE), combining the biological performance and the high porosity of a collagen scaffold with the high mechanical stiffness of a HA scaffold. Pure collagen scaffolds were produced using a lyophilization process and immersed in simulated body fluid (SBF) to provide a biomimetic coating. Pure collagen scaffolds served as a control. The mechanical, material, and structural properties of the scaffolds were analyzed and the biological performance of the scaffolds was evaluated by monitoring the cellular metabolic activity and cell number at 1, 2, and 7 days post seeding. The SBF-treated scaffolds exhibited a significantly increased stiffness compared to the pure collagen group (4-fold increase), while a highly interconnected structure (95%) was retained. FTIR indicated that the SBF coating exhibited similar characteristics to pure HA. Micro-CT showed a homogeneous distribution of HA. Scanning electron microscopy also indicated a mineralization of the collagen combined with a precipitation of HA onto the collagen. The excellent biological performance of the collagen scaffolds was maintained in the collagen-HA scaffolds as demonstrated from cellular metabolic activity and total cell number. This investigation has successfully developed a biomimetic collagen-HA composite scaffold. An increase in the mechanical properties combined with an excellent biological performance in vitro was observed, indicating the high potential of the scaffold for bone TE.
机译:这项研究的目的是开发一种仿生,高度多孔的胶原蛋白-羟基磷灰石(HA)复合支架,用于骨组织工程(TE),将胶原蛋白支架的生物学性能和高孔隙度与HA支架的高机械刚度相结合。使用冻干法生产纯胶原蛋白支架,并将其浸入模拟体液(SBF)中以提供仿生涂层。纯胶原支架用作对照。分析了支架的机械,材料和结构特性,并通过监测接种后1、2和7天的细胞代谢活性和细胞数来评估支架的生物学性能。与纯胶原蛋白组相比,经SBF处理的支架显示出显着增强的刚度(增加了4倍),同时保留了高度互连的结构(95%)。 FTIR表明SBF涂层表现出与纯HA相似的特性。 Micro-CT显示HA均匀分布。扫描电子显微镜还显示了胶原的矿化以及HA在胶原上的沉淀。从细胞代谢活性和总细胞数证明,胶原蛋白-HA支架中胶原蛋白支架具有优异的生物学性能。该研究成功开发了仿生胶原-HA复合支架。观察到机械性能的提高以及优异的体外生物学性能,表明该支架具有很高的骨TE潜力。

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