Zhao Dewei, Cheng Liangliang, Lu Faqiang, Zhang Xiuzhi, Ying Jiawei, Wei Xiaowei, Cao Fang, Ran Chunxiao, Zheng Guoshuang, Liu Ge, Yi Pinqiao, Wang Haiyao, Song Liqun, Wu Bin, Liu Lingpeng, Li Lu, Wang Xiaohu, Li Junlei
Department of Orthopaedics, Affiliated Zhongshan Hospital of Dalian University, Dalian 116001, China.
Regen Biomater. 2024 Jun 3;11:rbae057. doi: 10.1093/rb/rbae057. eCollection 2024.
The joint prosthesis plays a vital role in the outcome of total hip arthroplasty. The key factors that determine the performance of joint prostheses are the materials used and the structural design of the prosthesis. This study aimed to fabricate a porous tantalum (Ta) hip prosthesis using selective laser melting (SLM) technology. The feasibility of SLM Ta use in hip prosthesis was verified by studying its chemical composition, metallographic structure and mechanical properties. experiments proved that SLM Ta exhibited better biological activities in promoting osteogenesis and inhibiting inflammation than SLM Ti6Al4V. Then, the topological optimization design of the femoral stem of the SLM Ta hip prosthesis was carried out by finite element simulation, and the fatigue performance of the optimized prosthesis was tested to verify the biomechanical safety of the prosthesis. A porous Ta acetabulum cup was also designed and fabricated using SLM. Its mechanical properties were then studied. Finally, clinical trials were conducted to verify the clinical efficacy of the SLM Ta hip prosthesis. The porous structure could reduce the weight of the prosthesis and stress shielding and avoid bone resorption around the prosthesis. In addition, anti-infection drugs can also be loaded into the pores for infection treatment. The acetabular cup can be custom-designed based on the severity of bone loss on the acetabular side, and the integrated acetabular cup can repair the acetabular bone defect while achieving the function of the acetabular cup.
关节假体在全髋关节置换术的结果中起着至关重要的作用。决定关节假体性能的关键因素是所使用的材料和假体的结构设计。本研究旨在利用选择性激光熔化(SLM)技术制造一种多孔钽(Ta)髋关节假体。通过研究其化学成分、金相结构和力学性能,验证了SLM钽用于髋关节假体的可行性。实验证明,与SLM Ti6Al4V相比,SLM钽在促进成骨和抑制炎症方面表现出更好的生物活性。然后,通过有限元模拟对SLM钽髋关节假体的股骨柄进行拓扑优化设计,并测试优化后假体的疲劳性能,以验证假体的生物力学安全性。还使用SLM设计并制造了一个多孔钽髋臼杯。随后研究了其力学性能。最后,进行临床试验以验证SLM钽髋关节假体的临床疗效。多孔结构可以减轻假体重量并减少应力遮挡,避免假体周围的骨吸收。此外,还可以将抗感染药物加载到孔隙中进行感染治疗。髋臼杯可以根据髋臼侧骨丢失的严重程度进行定制设计,一体化髋臼杯可以修复髋臼骨缺损,同时实现髋臼杯的功能。