Porous titanium-hydroxyapatite composite coating obtained on titanium by cold gas spray with high bond strength for biomedical applications

Author

Guillem Martí, Jordi

Cinca, Núria

Punset Fuste, Miquel

García Cano, Irene

Gil Mur, Francisco Javier

Guilemany, José Maria

Dosta, Sergi

Publication date

2019-04-24



Abstract

The lack of bioactivity of titanium (Ti) is one of the main drawbacks for its application in biomedical implants since it can considerable reduce its osseointegration capacities. One strategy to overcome this limitation is the coating of Ti with hydroxyapatite (HA), which presents similar chemical composition than bone. Nonetheless, most of the strategies currently used generate a non-stable coating and may produce the formation of amorphous phases when high temperatures are used. Herein, we proposed to generate a Ti-HA composite coating on Ti surface to improve the stability of the bioactive coating. The coating was produced by cold gas spraying, which uses relatively low temperatures, and compared to a Ti coating. The coating was thoroughly characterized in terms of morphology, roughness, porosity and phase composition. In addition, the coating was mechanically characterized using a tensile loading machine. Finally, biological response was evaluated after seeding SaOS-2 osteoblasts and measuring cell adhesion, proliferation and differentiation. The novel Ti-HA coating presented high porosity and high adhesion and bond strengths. No change in HA phases was observed after coating formation. Moreover, osteoblast-like cells adhered, proliferated and differentiated on Ti-HA coated surfaces suggesting that the novel coating might be a good candidate for biomedical applications.

Document Type

Article

Document version

Accepted version

Language

English

CDU Subject

54 - Chemistry. Crystallography. Mineralogy; 61 - Medical sciences

Subjects and keywords

Titani; Titanio; Titanium; Materials biomèdics; Biomedical materials; Materiales biomédicos; Hydroxyapatite coating

Pages

33

Publisher

Elsevier

Collection

180;

Note

This work was supported by the Spanish Government through project MAT2015-67183- R, cofounded by the EU through the European Regional Development Funds. The authors acknowledge also the Generalitat de Catalunya for funding the project 2017SGR-1165 and for the ICREA Award of M-P Ginebra.

Version of

Colloids and Surfaces B: Biointerfaces

Grant Agreement Number

info:eu-repo/grantAgreement/ES/1PE/MAT2015-67183-R

Rights

http://creativecommons.org/licenses/by-nc-nd/4.0/

http://creativecommons.org/licenses/by-nc-nd/4.0/

Attribution-NonCommercial-NoDerivatives 4.0 International

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