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    • Anhydride-functional silane immobilized onto titanium surfaces induces osteoblast cell differentiation and reduces bacterial adhesion and biofilm formation 

      Godoy-Gallardo, Maria; Guillem-Marti, Jordi; Sevilla Sánchez, Pablo; Manero, José María; Gil, FJ; Rodríguez Rius, Daniel (Materials Science and Engineering: C, 2016)
      Bacterial infection in dental implants along with osseointegration failure usually leads to loss of the device. Bioactive molecules with antibacterial properties can be attached to titanium surfaces ...
    • Antifouling coatings for dental implants: PEG-like coatings on titanium by plasma polymerization 

      Buxadera-Palomero, Judit; Canal Barnils, Cristina; Torrent Camarero, Sergi; Garrido, Beatriz; Gil, FJ; Rodríguez, Daniel (Biointerphases: an open access journal for the biomaterials interface community, 2015-06)
      Titanium dental implants are commonly used for the replacement of lost teeth, but they present a considerable number of failures due to the infection on surrounding tissues. The aim of this paper is the ...
    • Citric acid passivation of titanium dental implants for minimizing bacterial colonization impact 

      Punset fuste, Miquel; Vilarrasa, Javi; Nart Molina, José; Manero, José María; Bosch Canals, Begoña Maria; Padrós, Roberto; Pérez Antoñanzas, Roman; Gil Mur, Francisco Javier (Coatings, 2021)
      Surface topography and physical-chemical properties usually play a key-role in both osseointegration improvement and bacterial colonization reduction over the surface of dental implants. The aim of this ...
    • Relevant aspects of piranha passivation in Ti6Al4V alloy dental meshes 

      Cruz, Nuno; Gil Mur, Francisco Javier; Punset fuste, Miquel; Manero, José María; tondela, joão paulo; Verdeguer, Pablo; Aparicio, Conrado; Ruperez, Elisa (Coatings, 2022)
      Passivation of titanium alloy dental meshes cleans their surface and forms a thin layer of protective oxide (TiO2) on the surface of the material to improve resistance to corrosion and prevent release ...
    • Silver deposition on titanium surface by electrochemical anodizing process reduces bacterial adhesion of Streptococcus sanguinis and Lactobacillus salivarius 

      Godoy-Gallardo, Maria; Rodríguez Hernández, Ana Guadalupe; Delgado, Luis M.; Manero, José María; Gil, FJ; Rodríguez Rius, Daniel (Clinical Oral Implants Research, 2015)
      Objectives: The aim of this study was to determine the antibacterial properties of silver-doped titanium surfaces prepared with a novel electrochemical anodizing process. Material and methods: Titanium ...
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