Characterization of a micro-roughened TiO2/ZrO2 coating: mechanical properties and HBMSC responses in vitro. Other Scholarly Work

Si, Jiawen, Zhang, Jianjun, Liu, Sha et al. (2014). Characterization of a micro-roughened TiO2/ZrO2 coating: mechanical properties and HBMSC responses in vitro. . Acta Biochimica et Biophysica Sinica, 46(7), 572-581. 10.1093/abbs/gmu040

cited authors

  • Si, Jiawen; Zhang, Jianjun; Liu, Sha; Zhang, Wenbin; Yu, Dedong; Wang, Xudong; Guo, Lihe; Shen, Steve GF

authors

abstract

  • Previous studies have shown that using ZrO2 as a second phase to bioceramics can significantly increase the bonding strength of plasma-sprayed composite material. In the present study, micro-roughened titanium dioxide/zirconia (TiO2/ZrO2) (30 wt% ZrO2) coating and TiO2 coating were plasma-sprayed onto Ti plates. The micro-structural characteristics and mechanical properties of both coatings were investigated. Furthermore, the biological behavior and osteogenic differentiation of human bone marrow mesenchymal stem cells (HBMSCs) on both TiO2/ZrO2 and TiO2 coatings were compared. The results indicated that the shear bond strength and microhardness of TiO2/ZrO2 coating were statistically higher than those of TiO2 coating. Scanning electron microscope observation revealed that more irregularly shaped protuberances and denser pores were formed on the surface of TiO2/ZrO2 coating compared with those of TiO2 coating. Further comparative analysis of HBMSC proliferation and osteogenic differentiation on both coatings showed that significantly higher cellular alkaline phosphatase activity and expression levels of Runx2 and Osterix at day 10 after osteogenic culture were found on TiO2/ZrO2 coating compared with TiO2 coating, while no statistically significant difference in cell proliferation and extracellular calcium deposition was observed. The present study suggests that TiO2/ZrO2 coating may be favorable for dental implant applications.

publication date

  • July 1, 2014

published in

keywords

  • Base Sequence
  • Biocompatible Materials
  • Cell Differentiation
  • Cells, Cultured
  • DNA Primers
  • Hematopoietic Stem Cells
  • Humans
  • Materials Testing
  • Osteogenesis
  • Real-Time Polymerase Chain Reaction
  • Surface Properties
  • Titanium
  • Zirconium

Digital Object Identifier (DOI)

Medium

  • Print-Electronic

start page

  • 572

end page

  • 581

volume

  • 46

issue

  • 7