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通过激光粉末床熔融制造的镍钛合金的各向异性骨诱导能力

The Anisotropic Osteoinductive Capacity of a Nickel-Titanium Alloy Fabricated Through Laser Powder Bed Fusion.

作者信息

Sun Yu, Yu Zhenglei, Liu Qingping, Ren Luquan, Zhao Xin, Wang Jincheng

机构信息

Orthopaedic Medical Center, The 2nd Hospital of Jilin University, Changchun 130041, China.

Key of Bionic Engineering, Ministry of Education, Jilin University, Changchun 130022, China.

出版信息

Int J Mol Sci. 2025 May 13;26(10):4640. doi: 10.3390/ijms26104640.

Abstract

A novel parameter optimization method for additively manufacturing nickel-titanium (NiTi) alloys using laser powder bed fusion (LBPF) was developed. Compared with the conventional NiTi alloy and the previously reported LPBF-NiTi alloy, the LBPF-NiTi alloy prepared with these parameters exhibits excellent tensile properties and an anisotropic microstructure. Since distinct regions of orthopedic implants have specific functional requirements, we investigated the anisotropy of this LPBF-NiTi in terms of its osteoinductive capacity to determine the appropriate building direction for prosthesis fabrication. The biosafety of the transverse (XY-NiTi) and longitudinal (XZ-NiTi) planes was assessed through cytotoxicity assays. Comparative analyses of the biological activities of these planes were conducted by evaluating the adherent cell counts, the adhesion morphology, and the expression of osteogenic-related genes and factors in adherent cells. Compared with XZ-NiTi, XY-NiTi exhibited superior cell adhesion properties. Additionally, the expression levels of osteogenic markers (RUNX2, ALP, OPG, and OCN) were significantly greater in bone marrow mesenchymal cells (BMMCs) adhered to XY-NiTi than in those adhered to XZ-NiTi. These results indicate a greater osteogenic potential in the XY-NiTi group. XY-NiTi was more advantageous as an implant-bone contact surface. Building implant products in the direction perpendicular to the load-bearing axis enhances biofixation; thus, this is the preferred orientation for manufacturing orthopedic implants.

摘要

开发了一种用于激光粉末床熔融(LBPF)增材制造镍钛(NiTi)合金的新型参数优化方法。与传统NiTi合金和先前报道的LBPF-NiTi合金相比,采用这些参数制备的LBPF-NiTi合金具有优异的拉伸性能和各向异性微观结构。由于骨科植入物的不同区域有特定的功能要求,我们从其骨诱导能力方面研究了这种LBPF-NiTi的各向异性,以确定假体制造的合适构建方向。通过细胞毒性试验评估横向(XY-NiTi)和纵向(XZ-NiTi)平面的生物安全性。通过评估贴壁细胞计数、粘附形态以及贴壁细胞中成骨相关基因和因子的表达,对这些平面的生物活性进行了比较分析。与XZ-NiTi相比,XY-NiTi表现出更好的细胞粘附特性。此外,粘附于XY-NiTi的骨髓间充质细胞(BMMC)中成骨标志物(RUNX2、ALP、OPG和OCN)的表达水平明显高于粘附于XZ-NiTi的细胞。这些结果表明XY-NiTi组具有更大的成骨潜力。XY-NiTi作为植入物与骨的接触表面更具优势。在垂直于承载轴的方向制造植入物产品可增强生物固定;因此,这是制造骨科植入物的首选方向。

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