Periodontal ligament cell behavior on different titanium surfaces

Authors

  • Sema S. Hakki Department of Periodontology, Faculty of Dentistry, Selcuk University, Konya, Turkey
  • Petek Korkusuz Department of Histology and Embryology
  • Nuhan Purali Department of Biophysics, Hacettepe University Faculty of Medicine, Ankara, Turkey
  • Feza Korkusuz Department of Biomedical Engineering and Medical Center, Middle East Technical University, Ankara, Turkey
  • Buket S. Bozkurt Research Center of Faculty of Dentistry
  • Erdogan E. Hakki Department of Soil Science and Plant Nutrition, Molecular Genetics & Biotechnology Laboratories, Faculty of Agriculture, Selcuk University, Konya, Turkey
  • M. Ercument Onder Department of Biomedical Engineering and Medical Center, Middle East Technical University, Ankara, Turkey
  • Ilker Gorur Department of Oral and Maxillofacial Surgery, Faculty of Dentistry, Ankara University, Ankara, Turkey
  • Rahime M. Nohutcu Department of Periodontology, Faculty of Dentistry, Hacettepe University, Ankara, Turkey
  • Muharrem Timucin Department of Metallurgical and Materials Engineering, Faculty of Engineering, Middle East Technical University, Ankara, Turkey
  • Adnan Ozturk Department of Oral and Maxillofacial Surgery, Faculty of Dentistry, Ankara University, Ankara, Turkey

DOI:

https://doi.org/10.3109/00016357.2012.734417

Keywords:

titanium surface, sodium titanate coating, implant, periodontal ligament cells, scanning electron microscopy, confocal microscopy, proliferation, mineralization, mRNA expressions

Abstract

Aim. The purpose of this study was to investigate proliferation, morphology, mineralization and mRNA expressions of mineralized tissue associated proteins of PDL cells on smooth (S), sandblasted small-grit (SSG), sandblasted large-grit (SLG) and sodium titanate (NaTi) coated titanium alloys, in vitro. Methods and materials: PDL cells were cultured with DMEM media containing 10% FBS on the S, SSG, SLG and NaTi titanium surfaces. PDL cell proliferation, mineralization and immunohistochemistry experiments for Bone Sialoprotein (BSP) were performed. The morphology of the PDL cells was examined using confocal and scanning electron microscopy (SEM). Gene expression profiles of cells were evaluated using a quantitative-polymerase chain reaction (Q-PCR) for type I collagen (COL I), Osteocalcin (OCN), osteopontin (OPN) and Runt-related transcription factor-2 (Runx2) on days 7 and 14. Results. Proliferation results on days 6 and 10 were similar in groups, while those of day 13 revealed a decrease in the NaTi group when compared to the S group. NaTi surface induced BSP mRNA expression which was correlated with mineralization tests and BSP immunostaining results. Increased Runx2 mRNA expression was also noted in the NaTi surface when compared to other surfaces. Conclusions. This study considers the NaTi surface as a potential alternative to SSG and SLG surfaces. This surface might provide a promising environment for PDL ligament-anchored implants.

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Published

2013-01-01