Wu Tong, Yu Suihuai, Chen Dengkai, Wang Yanen
Shaanxi Engineering Laboratory for Industrial Design, Northwestern Polytechnical University, Xi'an 710072, China.
School of Mechanical Engineering, Northwestern Polytechnical University, Xi'an 710072, China.
Materials (Basel). 2017 Oct 17;10(10):1187. doi: 10.3390/ma10101187.
Design, materials, and performance are important factors in the research of bone tissue scaffolds. This work briefly describes the bone scaffolds and their anatomic structure, as well as their biological and mechanical characteristics. Furthermore, we reviewed the characteristics of metal materials, inorganic materials, organic polymer materials, and composite materials. The importance of the bionic design in preoperative diagnosis models and customized bone scaffolds was also discussed, addressing both the bionic structure design (macro and micro structure) and the bionic performance design (mechanical performance and biological performance). Materials and performance are the two main problems in the development of customized bone scaffolds. Bionic design is an effective way to solve these problems, which could improve the clinical application of bone scaffolds, by creating a balance between mechanical performance and biological performance.
设计、材料和性能是骨组织支架研究中的重要因素。本文简要描述了骨支架及其解剖结构,以及它们的生物学和力学特性。此外,我们还综述了金属材料、无机材料、有机高分子材料和复合材料的特性。还讨论了仿生设计在术前诊断模型和定制骨支架中的重要性,涉及仿生结构设计(宏观和微观结构)和仿生性能设计(力学性能和生物学性能)。材料和性能是定制骨支架开发中的两个主要问题。仿生设计是解决这些问题的有效途径,通过在力学性能和生物学性能之间取得平衡,可以改善骨支架的临床应用。