Research Progress of Titanium-Based Alloys for Medical Devices

Author:

Baltatu Madalina Simona1ORCID,Vizureanu Petrica12ORCID,Sandu Andrei Victor1345ORCID,Solcan Carmen6ORCID,Hritcu Luminița Diana6,Spataru Mihaela Claudia6

Affiliation:

1. Faculty of Materials Science and Engineering, “Gheorghe Asachi” Technical University of Iasi, 41 “D. Mangeron” Street, 700050 Iasi, Romania

2. Technical Sciences Academy of Romania, Dacia Blvd 26, 030167 Bucharest, Romania

3. Romanian Inventors Forum, Str. Sf. P. Movila 3, 700089 Iasi, Romania

4. Academy of Romanian Scientists, 54 Splaiul Independentei, 050094 Bucharest, Romania

5. National Institute for Research and Development in Environmental Protection, 294 Splaiul Independentei, 060031 Bucharest, Romania

6. Department of Public Health, Faculty of Veterinary Medicine, Iasi University of Life Sciences, Mihail Sadoveanu Street, No 3, 700490 Iasi, Romania

Abstract

Biomaterials are currently a unique class of materials that are essential to improving the standard of human life and extending it. In the assent of the appearance of biomaterials that contain non-toxic elements, in this study, we examine a system of Ti25Mo7Zr15TaxSi (x = 0, 0.5, 0.75, 1 wt.%) for future medical applications. The alloys were developed in a vacuum electric arc furnace and then studied from a structural, mechanical and in vivo assessment (on rabbits) perspective. The effect of the silicon addition was clearly seen in both the structural and the mechanical characteristics, standing out as beta alloys with a dendritic structure and lowering the mechanical properties as a result of the silicon addition. In experimental rabbits, the proliferation of mesenchymal stem cells was observed in the periosteum and peri-implant area, differentiating into osteoblasts and then into osteocytes. Osteoclasts were discovered within the cartilaginous islands that provide structural support to newly formed bone, playing a primary role in bone remodeling. The newly formed spongy tissue adhered to the fibrous capsule that surrounds the alloy, ensuring good osseointegration of metallic implants. The overexpression of Osteopontin, Metalloproteinase-2 (also known as gelatinase A), and Metallopeptidase-9 (also known as gelatinase B) underscores the processes of osteogenesis, bone mineralization, and normal bone remodeling.

Funder

Network of excellence in applied research and innovation for doctoral and postdoctoral programs/InoHubDoc

Technical University

European Social Fund

Publisher

MDPI AG

Subject

General Biochemistry, Genetics and Molecular Biology,Medicine (miscellaneous)

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