• Title of article

    The effect of carbon nanotubes/bioglass nanocomposite on mechanical and bioactivity properties of glass ionomer cement

  • Author/Authors

    Foroughi. M.R Dental Materials Research Center - School of Dentistry - Isfahan University of Medical Sciences , Khoroushi, M Dental Materials Research Canter and Department of Operative and Art - School of Dentistry - Isfahan University of Medical Sciences , Nazem, R Department of Operative and Art - School of Dentistry - Isfahan University of Medical Sciences , Akbarian Tefaghi, E School of Dentistry - Islamic Azad University - Khorasgan Branch

  • Pages
    12
  • From page
    3123
  • To page
    3134
  • Abstract
    Abstract. The aim of this study is to manufacture and characterize Carbon Nanotubes (CNTs)/bioglass (BG) to improve the mechanical and biocompatibility properties of Glass-Ionomer Cement (GIC). The powder of Glass-Ionomer Cements was prepared through fusion, and carbon nanotubes and bioactive glass were manufactured through fusion and added to the cement to improve its mechanical and bioactive properties. To evaluate the biological adaptation of manufactured composites, they were placed in Simulated Body Fluid (SBF). Finally, the compressive strength test and erosion test showed that the mechanical properties of Glass-Ionomer Cement are two-fold of those when 1% carbon nanotubes are used (P < 0.001). The electrical conductivity of BG increased by 8orders of magnitude after incorporation of 6.35 wt% of CNTs compared with pure BG. Short-duration tests were used in this study for preliminary evaluation of the eect of incorporating CNTs on broblasts. Analysis of cell proliferation, viability, and phenotype expression of PDL (periodontal ligament) broblasts showed inhibition on CNT-BG-GIC composite surfaces. Based on the results, the material exhibited optimized properties which can be used in restorative dental materials and lining and sealing llers in dentistry.
  • Keywords
    Bioglass 45S5 , Carbon nanotubes , Glass ionomer cement , Glass ceramics , Nanocomposites
  • Journal title
    Astroparticle Physics
  • Serial Year
    2016
  • Record number

    2423793