Novel Chemical Treatment of Porous Titanium Structures for Nanotextured Surface and Bioactive Behavior

被引:0
|
作者
Ferraris, Sara [1 ]
Alidoost, Dario [2 ]
Spriano, Silvia [1 ]
Torres, Yadir [3 ]
Beltran, AnaMaria [3 ]
机构
[1] Politecn Torino, Dept Appl Sci & Technol, I-10129 Turin, Italy
[2] Politecn Torino J TECH POLITO, Adv Joining Technol Interdept Lab, I-10129 Turin, Italy
[3] Univ Seville, Dept Ingn & Ciencia Los Mat & Transporte, Escuela Politecn Super, Seville 41011, Spain
关键词
bioactivity; chemical treatment; nanotexture; porous structure; titanium; MECHANICAL-PROPERTIES; SPACE HOLDER; POROSITY; BIOMATERIALS; IMPLANTS; SAMPLES; ALLOYS; GROWTH; LAYER;
D O I
10.1002/adem.202400866
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
Macroporous titanium structures are of interest in bone reconstruction because of their reduced modulus of elasticity (compared to bulk titanium), possibility of being colonized by cells, and biocompatibility. However, they are not bioactive and are not able to actively facilitate bone ingrowth or reduce bacterial adhesion. In the present research, work porous titanium scaffolds with different features (porosity 30-60 vol% and pore size 100-200 or 355-500 mu m) are obtained by the space holder technique. Samples are characterized using optical microscopy, computed tomography, scanning electron microscopy (SEM), and X-ray diffraction. Moreover, the theoretical elastic modulus and yield strength are calculated. A patented chemical treatment, able to produce a bioactive nanotextured oxide layer, has been optimized and successfully applied, for the first time, to structures with 50 vol% porosity and 100-200 mu m pore size (as the most promising for bone substitution due to the biomechanical and biofunctional balance). Bare and modified samples are characterized using field emission SEM, zeta potential measurements, and in vitro bioactivity tests (soaking in simulated body solution) to evaluate the effectiveness of the surface chemical treatment. Titanium macroporous structures are obtained by the space holder technique (porosity 30-60 vol% and pore size 100-200 or 355-500 mu m). Samples with 50% porosity and 100-200 mu m pore size are considered the most promising due to the biomechanical and biofunctional balance. A patented surface chemical treatment is optimized on these porous samples to preserve macroporosity and obtain nanotexture and bioactivity image (c) 2024 WILEY-VCH GmbH
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页数:12
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