Title of article
S. sanguinis adhesion on rough titanium surfaces: Effect of culture media
Author/Authors
Rodrيguez-Hernلndez، نويسنده , , Ana G. and Muٌoz-Tabares، نويسنده , , José A. and Godoy-Gallardo، نويسنده , , Maria and Juلrez، نويسنده , , Antonio and Gil، نويسنده , , Francisco-Javier، نويسنده ,
Issue Information
روزنامه با شماره پیاپی سال 2013
Pages
7
From page
714
To page
720
Abstract
Bacterial colonization plays a key role in dental implant failure, because they attach directly on implant surface upon implantation. Between different types of bacteria associated with the oral environment, Streptococcus sanguinis is essential in this process since it is an early colonizer. In this work the relationship between titanium surfaces modified by shot blasting treatment and S. sanguinis adhesion; have been studied in approached human mouth environment. Bacteria pre-inoculated with routinary solution were put in contact with titanium samples, shot-blasted with alumina and silicon carbide, and adhesion results were compared with those obtained when bacteria were pre-inoculated with modified artificial saliva medium and on saliva pre-coated titanium samples. Our results showed that bacterial adhesion on titanium samples was influenced by culture conditions. When S. sanguinis was inoculated in routinary culture media, colonies forming unities per square millimeter presented an increment correlated with roughness and surface energy, but separated by the type of particle used during shot-blasting treatment; whereas in modified artificial saliva only a relationship between bacteria adhered and the increment in both roughness and surface energy were observed, regardless of the particle type. Finally, on human saliva pre-coated samples no significant differences were observed among roughness, surface energy or particle.
Keywords
surface energy , Roughness , S. sanguinis , Titanium , bacterial adhesion , Artificial saliva
Journal title
Materials Science and Engineering C
Serial Year
2013
Journal title
Materials Science and Engineering C
Record number
2102589
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