首页> 外文期刊>Journal of the mechanical behavior of biomedical materials >Influence of a novel calcium-phosphate coating on the mechanical properties of highly porous collagen scaffolds for bone repair.
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Influence of a novel calcium-phosphate coating on the mechanical properties of highly porous collagen scaffolds for bone repair.

机译:新型磷酸钙涂层对高度多孔的骨修复胶原蛋白支架的力学性能的影响。

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Lyophilised collagen scaffolds have shown enormous potential in tissue engineering in a number of areas due to their excellent biological performance. However, they are limited for use in bone tissue engineering due to poor mechanical properties. This paper discusses the development of a calcium-phosphate coating for collagen scaffolds in order to improve their mechanical properties for bone tissue engineering. Pure collagen scaffolds produced in a lyophilization process were coated by immersing them in sodium ammonium hydrogen phosphate (NaNH(4)HPO(4)) followed by calcium chloride (CaCl(2)). The optimal immersing sequence, duration, as well as the optimal solution concentration which facilitated improved mechanical properties of the scaffolds was investigated. The influence of the coating on composition, structural and material properties was analysed. This investigation successfully developed a novel collagen/calcium-phosphate composite scaffold. An increase in the mechanical properties of the scaffolds from 0.3 kPa to up to 90 kPa was found relative to a pure collagen scaffold, while the porosity was maintained as high as 92%, indicating the potential of the scaffold for bone tissue engineering or as a bone graft substitute.
机译:冻干的胶原蛋白支架由于其出色的生物学性能,在许多领域都显示出在组织工程中的巨大潜力。但是,由于机械性能差,它们在骨组织工程中的使用受到限制。本文讨论了用于胶原蛋白支架的磷酸钙涂层的开发,以改善其在骨组织工程中的机械性能。通过将冻干过程中产生的纯胶原蛋白支架浸入磷酸氢钠铵(NaNH(4)HPO(4))中,然后浸入氯化钙(CaCl(2))中进行涂覆。研究了最佳浸入顺序,持续时间以及最佳溶液浓度,这些浓度有助于改善支架的机械性能。分析了涂层对组成,结构和材料性能的影响。这项研究成功开发了一种新型胶原蛋白/磷酸钙复合支架。相对于纯胶原蛋白支架,该支架的机械性能从0.3 kPa增加到高达90 kPa,而孔隙率则保持高达92%,表明该支架可用于骨组织工程或作为骨水泥。骨移植替代品。

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