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Novel strategy for mechanically tunable and bioactive metal implants

机译:机械可调和生物活性金属植入物的新策略

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摘要

Metals have been used as biostructural materials because of outstanding mechanical reliability. However, low bioactivity and high stiffness in biological environments have been major issues of metals, causing stress shielding effects or foreign body reactions after implantation. Therefore, in this study, densified porous titanium has been introduced to achieve comparable mechanical properties to hard tissues and bioactivity that promote a better interface between the implant and bone. Porous titanium scaffolds were successfully fabricated through dynamic freezing casting, and were densified, controlling the degree of densification by applied strain. During densification, structural integrity of porous titanium was well maintained without any mechanical deterioration, exhibiting good pore connectivity and large surface area. Densified porous titanium possesses two important features that have not been achieved by either dense titanium or porous titanium: 1) mechanical tunability of porous scaffolds through densification that allows scaffolds to be applied ranging from highly porous fillers to dense load-bearing implants and 2) improved bioactivity through bioactive coating that is capable of sustainable release through utilizing high surface area and pore connectivity with controllable tortuosity. This simple, but effective post-fabrication process of porous scaffolds has great potential to resolve unmet needs of biometals for biomedical applications. (C) 2014 Elsevier Ltd. All rights reserved.
机译:由于机械可靠性突出,金属已被用作生物结构材料。然而,生物环境中的低生物活性和高刚度已经是金属的主要问题,导致植入后的应力屏蔽效应或异物反应。因此,在本研究中,已经引入了致密的多孔钛,以实现与促进植入物和骨骼之间更好的界面的硬组织和生物活性的相当的机械性能。通过动态冷冻铸件成功制造多孔钛支架,并致密化,通过施加菌株控制致密化程度。在致密化期间,多孔钛的结构完整性保持良好,没有任何机械劣化,表现出良好的孔连接和大表面积。致密化多孔钛具有致密钛或多孔钛的两个重要特征,通过致密化,使多孔支架的机械可调性通过致密化,允许从高度多孔填料施加到致密的承载植入物中的支架和2)改善通过生物活性涂层的生物活性,通过利用高表面积和可控曲折度的孔连接能够进行可持续释放。这种简单但有效的多孔支架的制造过程具有很大的潜力,可以解决生物医学应用的生物组织的未满足需求。 (c)2014年elestvier有限公司保留所有权利。

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