Porous TiNi material manufactured via self-propagating high-temperature synthesis (SHS) and chemical treatment for ophthalmological implants

被引:0
|
作者
Anikeev, S. G. [1 ,2 ]
Hodorenko, V. N. [1 ]
Kaftaranova, M. I. [1 ]
Shabalina, A. V. [1 ]
Artyukhova, N. V. [1 ]
Terletskaya, E. N. [3 ]
Kulinich, S. A. [4 ]
Pakholkina, S. [1 ]
Bolshevich, E. A. [1 ]
Medvedev, Y. A. [5 ]
机构
[1] Tomsk State Univ, Lab Med Mat Sci, Tomsk 634050, Russia
[2] Kazan Fed Univ, Inst Phys, Kazan 420008, Russia
[3] Kuzbass Reg Clin Hosp, Kemerovo 650000, Russia
[4] Tokai Univ, Res Inst Sci & Technol, Hiratsuka, Kanagawa 2591292, Japan
[5] Moscow State Med & Dent Univ, Dept Oral & Maxillofacial Surg, Moscow 127006, Russia
来源
关键词
Porous TiNi alloy; Powder metallurgy; Self-propagating high-temperature synthesis; Surface modification; Biocompatibility; Biointegration; Ophthalmic orbital implants; SHAPE-MEMORY ALLOY; ORBITAL IMPLANTS; SURFACE CHARACTERIZATION; NITI; ENUCLEATION; POLYETHYLENE; FABRICATION; POROSITY;
D O I
10.1016/j.mtcomm.2024.110171
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
The study focuses on a novel porous TiNi-based material for ophthalmic orbital implants which was produced by self-propagating high-temperature synthesis (SHS) and, after proper surface modification, possesses a specific microstructure of its surface pores, which makes it attractive for biomedical use in implants. To get rid of its surface Ti2Ni 2 Ni secondary-phase particles, after preparation via SHS, the obtained porous TiNi material was etched in acidic solution. This was found to improve the material's surface morphology, adding micro-roughness to its macro-rough pores. Thus, as the main novelty, here we used a simple and efficient surface modification approach to our SHS-produced porous TiNi material, making it more attractive for biomedical applications. As a result, cell growth tests conducted on the material demonstrated improved cell adhesion and growth kinetics on such a porous material with improved roughness. Finally, the material was tested in vivo as an ophthalmic orbital implant, demonstrating good biocompatibility, good degree of biointegration with surrounding eyeball tissues, and no signs of rejection after as long as 180 days. Thus, the novel porous TiNi-based material shows promise for its use in ophthalmic implantology, for instance for manufacturing musculoskeletal stumps of the eyeball after evisceration, as it is biocompatible, has a high tissue-implant integration potential and demonstrates reduced risks of exposure and rejection of the implant.
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页数:13
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