Lv Yuting, Wang Binghao, Liu Guohao, Tang Yujin, Lu Eryi, Xie Kegong, Lan Changgong, Liu Jia, Qin Zhenbo, Wang Liqiang
College of Mechanical and Electronic Engineering, Shandong University of Science and Technology, Qingdao, China.
State Key Laboratory of Metal Matrix Composites, Shanghai Jiao Tong University, Shanghai, China.
Front Bioeng Biotechnol. 2021 Mar 26;9:641130. doi: 10.3389/fbioe.2021.641130. eCollection 2021.
Design an implant similar to the human bone is one of the critical problems in bone tissue engineering. Metal porous scaffolds have good prospects in bone tissue replacement due to their matching elastic modulus, better strength, and biocompatibility. However, traditional processing methods are challenging to fabricate scaffolds with a porous structure, limiting the development of porous scaffolds. With the advancement of additive manufacturing (AM) and computer-aided technologies, the development of porous metal scaffolds also ushers in unprecedented opportunities. In recent years, many new metal materials and innovative design methods are used to fabricate porous scaffolds with excellent mechanical properties and biocompatibility. This article reviews the research progress of porous metal scaffolds, and introduces the AM technologies used in porous metal scaffolds. Then the applications of different metal materials in bone scaffolds are summarized, and the advantages and limitations of various scaffold design methods are discussed. Finally, we look forward to the development prospects of AM in porous metal scaffolds.
设计一种类似于人体骨骼的植入物是骨组织工程中的关键问题之一。金属多孔支架因其弹性模量匹配、强度更好和生物相容性良好,在骨组织替代方面具有良好的前景。然而,传统加工方法难以制造具有多孔结构的支架,限制了多孔支架的发展。随着增材制造(AM)和计算机辅助技术的进步,多孔金属支架的发展也迎来了前所未有的机遇。近年来,许多新型金属材料和创新设计方法被用于制造具有优异力学性能和生物相容性的多孔支架。本文综述了多孔金属支架的研究进展,介绍了用于多孔金属支架的增材制造技术。然后总结了不同金属材料在骨支架中的应用,并讨论了各种支架设计方法的优缺点。最后,展望了增材制造在多孔金属支架中的发展前景。