3D-printed porous tantalum artificial bone scaffolds: fabrication, properties, and applications

制作 材料科学 人造骨 多孔性 3d打印 纳米技术 生物医学工程 复合材料 冶金 工程类 医学 病理 替代医学
作者
Haiyu Yu,Minghao Xu,Qida Duan,Yada Li,Yuchen Liu,Liqun Song,Liang Cheng,Jiawei Ying,Dewei Zhao
出处
期刊:Biomedical Materials [IOP Publishing]
卷期号:19 (4): 042002-042002 被引量:9
标识
DOI:10.1088/1748-605x/ad46d2
摘要

Abstract Porous tantalum scaffolds offer a high degree of biocompatibility and have a low friction coefficient. In addition, their biomimetic porous structure and mechanical properties, which closely resemble human bone tissue, make them a popular area of research in the field of bone defect repair. With the rapid advancement of additive manufacturing, 3D-printed porous tantalum scaffolds have increasingly emerged in recent years, offering exceptional design flexibility, as well as facilitating the fabrication of intricate geometries and complex pore structures that similar to human anatomy. This review provides a comprehensive description of the techniques, procedures, and specific parameters involved in the 3D printing of porous tantalum scaffolds. Concurrently, the review provides a summary of the mechanical properties, osteogenesis and antibacterial properties of porous tantalum scaffolds. The use of surface modification techniques and the drug carriers can enhance the characteristics of porous tantalum scaffolds. Accordingly, the review discusses the application of these porous tantalum materials in clinical settings. Multiple studies have demonstrated that 3D-printed porous tantalum scaffolds exhibit exceptional corrosion resistance, biocompatibility, and osteogenic properties. As a result, they are considered highly suitable biomaterials for repairing bone defects. Despite the rapid development of 3D-printed porous tantalum scaffolds, they still encounter challenges and issues when used as bone defect implants in clinical applications. Ultimately, a concise overview of the primary challenges faced by 3D-printed porous tantalum scaffolds is offered, and corresponding insights to promote further exploration and advancement in this domain are presented.
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