Literature DB >> 8718939

Cytocompatibility of Ti-6Al-4V and Ti-5Al-2.5Fe alloys according to three surface treatments, using human fibroblasts and osteoblasts.

K Bordji1, J Y Jouzeau, D Mainard, E Payan, P Netter, K T Rie, T Stucky, M Hage-Ali.   

Abstract

Titanium alloys are well known for their superior mechanical properties as well as for their good biocompatibility, making them desirable as surgical implant materials. However, these alloys have been proven to behave poorly in friction since wear particles were often detected in tissues and organs associated with titanium implants. In this paper, three surface treatments were investigated in order to improve the wear resistance and the hardness of Ti-6Al-4V and Ti-5Al-2.5Fe: (a) glow discharge nitrogen implantation (10(17) atoms cm-2), (b) plasma nitriding by plasma diffusion treatment (PDT) and (c) deposition of TiN layer by plasma-assisted chemical vapour deposition (PACVD) additionally to PDT. Surface characterization after the different treatments showed considerable improvement in surface hardness, especially after the two nitriding processes. Moreover, the good corrosion resistance of untreated alloys was maintained. A cell culture model using human cells was chosen to study the effect of such treatments on the cytocompatibility of these materials. The results showed that Ti-5Al-2.5Fe alloy was as cytocompatible as the Ti-6Al-4V alloy and the same surface treatment led to identical biological consequences on both alloys. Nitrogen implantation did not modify at all the cellular behaviour observed on untreated samples. After the two nitriding treatments, cell proliferation and viability appeared to be significantly reduced and the scanning electron microscopy study revealed somewhat irregular surface states. However, osteoblast phenotype expression and protein synthesis capacity were not affected. PDT and PACVD may be interesting alternatives to the physical vapour deposition technique.

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Year:  1996        PMID: 8718939     DOI: 10.1016/0142-9612(96)83289-3

Source DB:  PubMed          Journal:  Biomaterials        ISSN: 0142-9612            Impact factor:   12.479


  16 in total

1.  Topographic features retained after antibiotic modification of Ti alloy surfaces: retention of topography with attachment of antibiotics.

Authors:  Constantinos Ketonis; Javad Parvizi; Christopher S Adams; Irving M Shapiro; Noreen J Hickok
Journal:  Clin Orthop Relat Res       Date:  2009-04-14       Impact factor: 4.176

2.  The anatase phase of nanotopography titania plays an important role on osteoblast cell morphology and proliferation.

Authors:  Jie He; Wei Zhou; Xiaojian Zhou; Xiaoxia Zhong; Xiuli Zhang; Pengbo Wan; Bangshang Zhu; Wantao Chen
Journal:  J Mater Sci Mater Med       Date:  2008-07-01       Impact factor: 3.896

3.  Appearance of cell-adhesion factor in osteoblast proliferation and differentiation of apatite coating titanium by blast coating method.

Authors:  Hirotsugu Umeda; Takamitsu Mano; Koji Harada; Ferdous Tarannum; Yoshiya Ueyama
Journal:  J Mater Sci Mater Med       Date:  2017-06-15       Impact factor: 3.896

4.  Biological response of human bone marrow stromal cells to sandblasted titanium nitride-coated implant surfaces.

Authors:  Marco Annunziata; Luigi Guida; Letizia Perillo; Raffaella Aversa; Irene Passaro; Adriana Oliva
Journal:  J Mater Sci Mater Med       Date:  2008-07-16       Impact factor: 3.896

5.  Novel anti-infective activities of chitosan immobilized titanium surface with enhanced osteogenic properties.

Authors:  Niranjan Ghimire; Jie Luo; Ruogu Tang; Yuyu Sun; Ying Deng
Journal:  Colloids Surf B Biointerfaces       Date:  2014-07-03       Impact factor: 5.268

6.  Surface characterization and biocompatibility of titanium alloys implanted with nitrogen by Hardion+ technology.

Authors:  D M Gordin; T Gloriant; V Chane-Pane; D Busardo; V Mitran; D Höche; C Vasilescu; S I Drob; A Cimpean
Journal:  J Mater Sci Mater Med       Date:  2012-08-24       Impact factor: 3.896

7.  Improvement of titanium alloy for biomedical applications by nitriding and carbonitriding processes under glow discharge conditions.

Authors:  E Czarnowska; T Wierzchoń; A Maranda-Niedbała; E Karczmarewicz
Journal:  J Mater Sci Mater Med       Date:  2000-02       Impact factor: 3.896

Review 8.  Dental implant systems.

Authors:  Yoshiki Oshida; Elif B Tuna; Oya Aktören; Koray Gençay
Journal:  Int J Mol Sci       Date:  2010-04-12       Impact factor: 5.923

9.  Surface characteristics and bioactivity of an anodized titanium surface.

Authors:  Kyul Kim; Bo-Ah Lee; Xing-Hui Piao; Hyun-Ju Chung; Young-Joon Kim
Journal:  J Periodontal Implant Sci       Date:  2013-08-31       Impact factor: 2.614

10.  Bone tissue response to plasma-nitrided titanium implant surfaces.

Authors:  Emanuela Prado Ferraz; Alexander Tadeu Sverzut; Gileade Pereira Freitas; Juliana Carvalho Sá; Clodomiro Alves; Marcio Mateus Beloti; Adalberto Luiz Rosa
Journal:  J Appl Oral Sci       Date:  2015 Jan-Feb       Impact factor: 2.698

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