Literature DB >> 27581527

Mouse embryonic fibroblasts accumulate differentially on titanium surfaces treated with nanosecond laser pulses.

Mitra Radmanesh1, Amin M Ektesabi2, Rachael A Wyatt3, Bryan D Crawford3, Amirkianoosh Kiani1.   

Abstract

Biomaterial engineering, specifically in bone implant and osseointegration, is currently facing a critical challenge regarding the response of cells to foreign objects and general biocompatibility of the materials used in the production of these implants. Using the developing technology of the laser surface treatment, this study investigates the effects of the laser repetition rate (frequency) on cell distribution across the surface of the titanium substrates. The main objective of this research is building a fundamental understanding of how cells interact with treated titanium and how different treatments affect cell accumulation. Cells respond differently to surfaces treated with different frequency lasers. The results of this research identify the influence of frequency on surface topography properties and oxidation of titanium, and their subsequent effects on the pattern of cell accumulation on its surface. Despite increased oxidation in laser-treated regions, the authors observe that fibroblast cells prefer untreated titanium to laser-treated regions, except the regions treated with 25 kHz pulses, which become preferentially colonized after 72 h.

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Year:  2016        PMID: 27581527     DOI: 10.1116/1.4962066

Source DB:  PubMed          Journal:  Biointerphases        ISSN: 1559-4106            Impact factor:   2.456


  1 in total

1.  Laser processing of thin-film multilayer structures: comparison between a 3D thermal model and experimental results.

Authors:  Babak B Naghshine; Amirkianoosh Kiani
Journal:  Beilstein J Nanotechnol       Date:  2017-08-24       Impact factor: 3.649

  1 in total

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