Literature DB >> 21915513

Oxidative nanopatterning of titanium surfaces promotes production and extracellular accumulation of osteopontin.

Renan de Barros E Lima Bueno1, Patricia Adachi, Larissa Moreira Spinola de Castro-Raucci, Adalberto Luiz Rosa, Antonio Nanci, Paulo Tambasco de Oliveira.   

Abstract

The bone-biomaterial interface has been characterized by layers of afibrillar extracellular matrix (ECM) enriched in non collagenous proteins, including osteopontin (OPN), a multifunctional protein that in bone controls cell adhesion and ECM mineralization. Physical and chemical aspects of biomaterial surfaces have been demonstrated to affect cell-ECM-substrate interactions. The present paper described the ability of oxidative nanopatterning of titanium (Ti) surfaces to control extracellular OPN deposition in vitro. Ti discs were chemically treated by a mixture of H2SO4/H2O2 for either 30 min [Nano(30') Ti] or 4 h [Nano(4h) Ti]. Non-etched Ti discs were used as control. Primary osteogenic cells derived from newborn rat calvarial bone were plated on control and etched Ti and grown under osteogenic conditions up to 7 days. High resolution scanning electron microscopy revealed that treated Ti discs exhibited a nanoporous surface and that areas of larger nanopits were noticed only for Nano(4h) Ti. Large extracellular OPN accumulation were detectable only for Nano(4h) Ti, which was associated with OPN-positive cells with typical aspects of migrating cells. At day 3, quantitative results in terms of areas of OPN labeling were as follows: Nano(4h) Ti > Nano(30') Ti > Control Ti. In conclusion, chemically nanostructured Ti surfaces may support the enhancement of endogenous extracellular OPN deposition by osteogenic cells in vitro depending on the etching time, a finding that should be taken into consideration in strategies to biofunctionalize implant surfaces with molecules with cell adhesion capacity.

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Year:  2011        PMID: 21915513     DOI: 10.1590/s0103-64402011000300001

Source DB:  PubMed          Journal:  Braz Dent J        ISSN: 0103-6440


  6 in total

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Authors:  Rogerio B Kato; Bhaskar Roy; Fabiola S De Oliveira; Emanuela P Ferraz; Paulo T De Oliveira; Austin G Kemper; Mohammad Q Hassan; Adalberto L Rosa; Marcio M Beloti
Journal:  J Cell Physiol       Date:  2014-11       Impact factor: 6.384

2.  Osteoblast differentiation is enhanced by a nano-to-micro hybrid titanium surface created by Yb:YAG laser irradiation.

Authors:  Eduardo Mariscal-Muñoz; Carlos A S Costa; Hewerson S Tavares; Jonas Bianchi; Josimeri Hebling; João P B Machado; Ulf H Lerner; Pedro P C Souza
Journal:  Clin Oral Investig       Date:  2015-07-30       Impact factor: 3.573

Review 3.  Sandblasted and Acid Etched Titanium Dental Implant Surfaces Systematic Review and Confocal Microscopy Evaluation.

Authors:  Gabriele Cervino; Luca Fiorillo; Gaetano Iannello; Dario Santonocito; Giacomo Risitano; Marco Cicciù
Journal:  Materials (Basel)       Date:  2019-05-30       Impact factor: 3.623

4.  System for application of controlled forces on dental implants in rat maxillae: Influence of the number of load cycles on bone healing.

Authors:  Renan de Barros E Lima Bueno; Ana P Dias; Katia J Ponce; John B Brunski; Antonio Nanci
Journal:  J Biomed Mater Res B Appl Biomater       Date:  2019-07-31       Impact factor: 3.368

Review 5.  Surface Treatment of the Dental Implant with Hyaluronic Acid: An Overview of Recent Data.

Authors:  Gabriele Cervino; Agron Meto; Luca Fiorillo; Alessandra Odorici; Aida Meto; Cesare D'Amico; Giacomo Oteri; Marco Cicciù
Journal:  Int J Environ Res Public Health       Date:  2021-04-27       Impact factor: 3.390

6.  Effects of rmBMP-7 on Osteoblastic Cells Grown on a Nanostructured Titanium Surface.

Authors:  Leonardo Raphael Zuardi; Fabíola Singaretti de Oliveira; Roger Rodrigo Fernandes; Maria Paula Oliveira Gomes; Silvia Spriano; Antonio Nanci; Paulo Tambasco de Oliveira
Journal:  Biomimetics (Basel)       Date:  2022-09-16
  6 in total

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