Porous Ti-10Mo alloy fabricated by powder metallurgy for promoting bone regeneration粉末冶金制备的多孔Ti-10Mo合金用于促进骨修复的研究

被引:0
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作者
Wei Xu
Zhuo Liu
Xin Lu
Jingjing Tian
Gang Chen
Bowen Liu
Zhou Li
Xuanhui Qu
Cuie Wen
机构
[1] University of Science and Technology Beijing,Beijing Advanced Innovation Center for Materials Genome Engineering
[2] Chinese Academy of Sciences,CAS Center for Excellence in Nanoscience, Beijing Key Laboratory of Micro
[3] University of Science and Technology Beijing,nano Energy and Sensor, Beijing Institute of Nanoenergy and Nanosystems
[4] RMIT University,Beijing Advanced Innovation Center for Materials Genome Engineering, Institute for Advanced Materials and Technology
来源
Science China Materials | 2019年 / 62卷
关键词
Porosity; powder metallurgy; structure characterization; cell cytotoxicity; osteointegration;
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中图分类号
学科分类号
摘要
Porous Ti-10Mo alloys were fabricated by powder metallurgy using a space-holder method. The pore characteristics, microstructure, mechanical properties, in vitro biocompatibility, and in vivo osseointegration of the fabricated alloys were systematically investigated. The results show that with different weight ratios of the space-holder (NH4 HCO3) added, all of the porous Ti-10Mo alloys sintered at 1,300°C exhibited a typical Widmanstätten microstructure. The porosity and average pore size of the porous structures can be controlled in the range of 50.8%–66.9% and 70.1–381.4 μm, respectively. The Ti-10Mo alloy with 63.4% porosity exhibited the most suitable mechanical properties for implant applications with an elastic modulus of 2.9 GPa and a compressive yield strength of 127.5 MPa. In vitro, the alloyconditioned medium showed no deleterious effect on the cell proliferation. The cell viability in this medium was higher than that of the reference group, suggesting non-toxicity and good biological characteristics of the alloy specimens. In vivo, after eight weeks’ implantation, new bone tissue formed surrounding the alloy implants, and no noticeable inflammation was observed at the implantation site. The bone bonding strength of the porous Ti-10Mo alloy increased over time from 46.6 N at two weeks to 176.4 N at eight weeks. Suitable mechanical properties together with excellent biocompatibility in vitro and osteointegration in vivo make the porous Ti-10Mo fabricated by powder metallurgy an attractive orthopedic implant alloy.
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页码:1053 / 1064
页数:11
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