Evaluation of the Bactericidal Properties of the Biomimetic Coating of Ha Doped with AgNO3

Author:

de Sousa Lucíola Lucena1,Prado Deborah Gouvêa2,Coelho Mariny Fabiéle Cabral2,Ricci Virgilio Pereira2,Ferreira Guilherme Vilela2,da S. Rigo Eliana C.3,dos Santos Fernandes Mérilin Cristina2,Mariano Neide Aparecida1

Affiliation:

1. Universidade Federal de Alfenas (UNIFAL-MG)

2. Universidade Federal de Alfenas

3. Universidade de São Paulo

Abstract

Commercially pure titanium and its alloys have been widely applied as implant materials with excellent long-term results and present benefits compared to other metal biomaterials because of the good mechanical strength and modulus of elasticity with values close to those of the bone. Titanium implants coated with hydroxyapatite give the metal a bioactive surface, which induces a direct connection between the implant and the bone tissue. As a consequence, the time for osseointegration, and hence the total treatment time, may be reduced. This paper aimed at studying the bactericidal effect of silver nitrate at 10 ppm and 100 ppm, incorporated in the layer on the surface of commercial titanium. The results showed efficiency in both osseointegration and bactericidal effect, confirmed by scanning electron microscopy, X-ray diffraction and corrosion tests. The bacterial culture tests, by means of the halo inhibition tests, indicate that the doping with AgNO3in concentrations 10 and 100 ppm did not present significant variation.

Publisher

Trans Tech Publications, Ltd.

Subject

Mechanical Engineering,Mechanics of Materials,Condensed Matter Physics,General Materials Science

Reference20 articles.

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2. M. Kulkarni, A. Mazare, I.P. Schmuk, A. Iglic: Biomaterial Surface Modification of Titanium and Titanium Alloys for Medical Applications. (In: A. Seifalian, editor. Nanomedicine UK Central Press, 2014).

3. Y. Wang, H. Yu, C. Chen, Z. Zhao: Materials and Design Vol. 85 (2015), p.640.

4. T. Kawai et al.: J. Biomed. Mater. Res. Part B Vol. 103 (2015), p.1069.

5. M. Supová: Ceramics International Vol. 41 (8) (2015), p.9203.

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