Literature DB >> 23338484

The bone tissue compatibility of a new Ti35Nb2Ta3Zr alloy with a low Young's modulus.

Yongyuan Guo1, Desheng Chen, Mengqi Cheng, Weijie Lu, Liqiang Wang, Xianlong Zhang.   

Abstract

Titanium (Ti) alloys of the β-type are highly attractive metallic materials for biomedical applications due to their low elastic modulus, high corrosion resistance and notable biocompatibility. A new β-type Ti35Nb2Ta3Zr alloy with a low Young's modulus of approximately 48 GPa was previously fabricated. In the present study, the biocompatibility of this alloy was evaluated. In an in vitro assay, the Ti35Nb2Ta3Zr alloy did not markedly affect the adhesion of MG63 osteoblast cells, but it increased their proliferation, alkaline phosphatase (ALP) activity, calcium deposition and mRNA expression of osteogenic genes (i.e., ALP, osteocalcin, osteopontin). In an in vivo study, no marked histological differences were observed between the new bone formed on the surface of Ti35Nb2Ta3Zr and that formed on the surface of control Ti6Al4V rods placed in the medullary canal of rabbit femurs. Additionally, no significant differences were observed in the failure load of Ti35Nb2Ta3Zr and Ti6Al4V in pull-out tests. In conclusion, the Ti35Nb2Ta3Zr alloy with a lower elastic modulus closer to that of human bone has significant bone tissue compatibility equal to that of Ti6Al4V, which has been widely used in orthopedic applications.

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Year:  2013        PMID: 23338484     DOI: 10.3892/ijmm.2013.1249

Source DB:  PubMed          Journal:  Int J Mol Med        ISSN: 1107-3756            Impact factor:   4.101


  10 in total

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2.  The in vitro and in vivo performance of a strontium-containing coating on the low-modulus Ti35Nb2Ta3Zr alloy formed by micro-arc oxidation.

Authors:  Wei Liu; Mengqi Cheng; Tuerhongjiang Wahafu; Yaochao Zhao; Hui Qin; Jiaxing Wang; Xianlong Zhang; Liqiang Wang
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Review 3.  Nano-Modified Titanium Implant Materials: A Way Toward Improved Antibacterial Properties.

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Review 4.  Research Progress of Titanium-Based High Entropy Alloy: Methods, Properties, and Applications.

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Review 5.  Surface Modification Techniques of Titanium and its Alloys to Functionally Optimize Their Biomedical Properties: Thematic Review.

Authors:  Tong Xue; Shokouh Attarilar; Shifeng Liu; Jia Liu; Xi Song; Lanjie Li; Beibei Zhao; Yujin Tang
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6.  A Novel Design of Temporomandibular Joint Prosthesis for Lateral Pterygoid Muscle Attachment: A Preliminary Study.

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Review 7.  Metal Material, Properties and Design Methods of Porous Biomedical Scaffolds for Additive Manufacturing: A Review.

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Journal:  Front Bioeng Biotechnol       Date:  2021-03-26

8.  Influence of Isothermal ω Transitional Phase-Assisted Phase Transition From β to α on Room-Temperature Mechanical Performance of a Meta-Stable β Titanium Alloy Ti-10Mo-6Zr-4Sn-3Nb (Ti-B12) for Medical Application.

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Journal:  Front Bioeng Biotechnol       Date:  2021-01-20

9.  Increased osteoblast function in vitro and in vivo through surface nanostructuring by ultrasonic shot peening.

Authors:  Yongyuan Guo; Beibei Hu; Chu Tang; Yunpeng Wu; Pengfei Sun; Xianlong Zhang; Yuhua Jia
Journal:  Int J Nanomedicine       Date:  2015-07-20

10.  In vitro and in vivo biological performance of porous Ti alloys prepared by powder metallurgy.

Authors:  Renata Falchete do Prado; Gabriela Campos Esteves; Evelyn Luzia De Souza Santos; Daiane Acácia Griti Bueno; Carlos Alberto Alves Cairo; Luis Gustavo Oliveira De Vasconcellos; Renata Silveira Sagnori; Fernanda Bastos Pereira Tessarin; Felipe Eduardo Oliveira; Luciane Dias De Oliveira; Maria Fernanda Lima Villaça-Carvalho; Vinicius André Rodrigues Henriques; Yasmin Rodarte Carvalho; Luana Marotta Reis De Vasconcellos
Journal:  PLoS One       Date:  2018-05-17       Impact factor: 3.240

  10 in total

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