Literature DB >> 25611515

Titanium nanostructures for biomedical applications.

M Kulkarni1, A Mazare, E Gongadze, Š Perutkova, V Kralj-Iglič, I Milošev, P Schmuki, M Mozetič.   

Abstract

Titanium and titanium alloys exhibit a unique combination of strength and biocompatibility, which enables their use in medical applications and accounts for their extensive use as implant materials in the last 50 years. Currently, a large amount of research is being carried out in order to determine the optimal surface topography for use in bioapplications, and thus the emphasis is on nanotechnology for biomedical applications. It was recently shown that titanium implants with rough surface topography and free energy increase osteoblast adhesion, maturation and subsequent bone formation. Furthermore, the adhesion of different cell lines to the surface of titanium implants is influenced by the surface characteristics of titanium; namely topography, charge distribution and chemistry. The present review article focuses on the specific nanotopography of titanium, i.e. titanium dioxide (TiO2) nanotubes, using a simple electrochemical anodisation method of the metallic substrate and other processes such as the hydrothermal or sol-gel template. One key advantage of using TiO2 nanotubes in cell interactions is based on the fact that TiO2 nanotube morphology is correlated with cell adhesion, spreading, growth and differentiation of mesenchymal stem cells, which were shown to be maximally induced on smaller diameter nanotubes (15 nm), but hindered on larger diameter (100 nm) tubes, leading to cell death and apoptosis. Research has supported the significance of nanotopography (TiO2 nanotube diameter) in cell adhesion and cell growth, and suggests that the mechanics of focal adhesion formation are similar among different cell types. As such, the present review will focus on perhaps the most spectacular and surprising one-dimensional structures and their unique biomedical applications for increased osseointegration, protein interaction and antibacterial properties.

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Year:  2015        PMID: 25611515     DOI: 10.1088/0957-4484/26/6/062002

Source DB:  PubMed          Journal:  Nanotechnology        ISSN: 0957-4484            Impact factor:   3.874


  57 in total

1.  Nanopatterned bulk metallic glass-based biomaterials modulate macrophage polarization.

Authors:  Mahdis Shayan; Jagannath Padmanabhan; Aaron H Morris; Bettina Cheung; Ryan Smith; Jan Schroers; Themis R Kyriakides
Journal:  Acta Biomater       Date:  2018-06-01       Impact factor: 8.947

2.  Biocompatibility of new materials based on nano-structured nitinol with titanium and tantalum composite surface layers: experimental analysis in vitro and in vivo.

Authors:  Mikhail A Sevost'yanov; Elena O Nasakina; Alexander S Baikin; Konstantin V Sergienko; Sergey V Konushkin; Mikhail A Kaplan; Alexey V Seregin; Alexander V Leonov; Valery A Kozlov; Alexey V Shkirin; Nikolai F Bunkin; Alexey G Kolmakov; Sergey V Simakov; Sergey V Gudkov
Journal:  J Mater Sci Mater Med       Date:  2018-03-15       Impact factor: 3.896

Review 3.  Nanotechnology in Transportation Vehicles: An Overview of Its Applications, Environmental, Health and Safety Concerns.

Authors:  Muhammad Shafique; Xiaowei Luo
Journal:  Materials (Basel)       Date:  2019-08-06       Impact factor: 3.623

4.  Different diameters of titanium dioxide nanotubes modulate Saos-2 osteoblast-like cell adhesion and osteogenic differentiation and nanomechanical properties of the surface.

Authors:  Barbora Voltrova; Vojtech Hybasek; Veronika Blahnova; Josef Sepitka; Vera Lukasova; Karolina Vocetkova; Vera Sovkova; Roman Matejka; Jaroslav Fojt; Ludek Joska; Matej Daniel; Eva Filova
Journal:  RSC Adv       Date:  2019-04-11       Impact factor: 4.036

5.  Nanoscale hybrid implant surfaces and Osterix-mediated osseointegration.

Authors:  Laís Morandini Rodrigues; Elis A Lima Zutin; Elisa M Sartori; Fabio A P Rizzante; Daniela B S Mendonça; Paul H Krebsbach; Karl J Jepsen; Lyndon F Cooper; Luana M R Vasconcellos; Gustavo Mendonça
Journal:  J Biomed Mater Res A       Date:  2021-10-21       Impact factor: 4.854

6.  Non-Washed Resorbable Blasting Media (NWRBM) on Titanium Surfaces could Enhance Osteogenic Properties of MSCs through Increase of miRNA-196a And VCAM1.

Authors:  Chiara Gardin; Letizia Ferroni; Adriano Piattelli; Stefano SIvolella; Barbara Zavan; Eitan Mijiritsky
Journal:  Stem Cell Rev Rep       Date:  2016-10       Impact factor: 5.739

7.  Characterization of Optimized TiO2 Nanotubes Morphology for Medical Implants: Biological Activity and Corrosion Resistance.

Authors:  Ricardo Pereira Nogueira; Jose Deuzimar Uchoa; Fanny Hilario; Gabriela de Fátima Santana-Melo; Luana Marotta Reis de Vasconcellos; Fernanda Roberta Marciano; Virginie Roche; Alberto Moreira Jorge Junior; Anderson Oliveira Lobo
Journal:  Int J Nanomedicine       Date:  2021-01-26

8.  Binding of plasma proteins to titanium dioxide nanotubes with different diameters.

Authors:  Mukta Kulkarni; Ajda Flašker; Maruša Lokar; Katjuša Mrak-Poljšak; Anca Mazare; Andrej Artenjak; Saša Čučnik; Slavko Kralj; Aljaž Velikonja; Patrik Schmuki; Veronika Kralj-Iglič; Snezna Sodin-Semrl; Aleš Iglič
Journal:  Int J Nanomedicine       Date:  2015-02-18

9.  Osseointegration Improvement of Co-Cr-Mo Alloy Produced by Additive Manufacturing.

Authors:  Amilton Iatecola; Guilherme Arthur Longhitano; Luiz Henrique Martinez Antunes; André Luiz Jardini; Emilio de Castro Miguel; Miloslav Béreš; Carlos Salles Lambert; Tiago Neves Andrade; Rogério Leone Buchaim; Daniela Vieira Buchaim; Karina Torres Pomini; Jefferson Aparecido Dias; Daniele Raineri Mesquita Serva Spressão; Marcílio Felix; Guinea Brasil Camargo Cardoso; Marcelo Rodrigues da Cunha
Journal:  Pharmaceutics       Date:  2021-05-14       Impact factor: 6.321

10.  Antibacterial Optimization of Highly Deformed Titanium Alloys for Spinal Implants.

Authors:  Katarzyna Kasperkiewicz; Roman Major; Anna Sypien; Marcin Kot; Marcin Dyner; Łukasz Major; Adam Byrski; Magdalena Kopernik; Juergen M Lackner
Journal:  Molecules       Date:  2021-05-24       Impact factor: 4.411

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