[Influence of fluoride ion-implanted titanium on the formation of focal adhesion plaque in vitro].

Hua Xi Kou Qiang Yi Xue Za Zhi

Department of Prosthodontics, School of Stomatology, China Medical University, Shenyang 110001, China.

Published: April 2008

AI Article Synopsis

  • The study aimed to assess how fluoride ion implantation alters the surface composition of titanium and its impact on cell attachment.
  • Titanium discs were treated with fluoride ions and analyzed using X-ray photoelectron spectroscopy (XPS) to evaluate the chemical composition, followed by culturing cells to observe focal adhesion plaque formation.
  • Results showed that the treated titanium surface was a mix of titanium dioxide and titanium trifluoride, leading to a higher quantity of focal adhesion plaques compared to untreated titanium after 6 hours of cell culture.

Article Abstract

Objective: To evaluate the chemical composition of the modified surface of fluoride ion-implanted titanium and assess the effect on the formation of focal adhesion plaque in vitro.

Methods: Pure commercial titanium discs were treated with fluoride ion implantation by plasma immersion ion implantation technique (PIII) and chemical composition and value of the surface modification layer were characterized by X-ray photoelectron spectrometer (XPS). In order to investigate the formation of focal adhesion plaque, MG-63 cells were seeded onto the surfaces of the modified Ti discs and quantified by morphometric analysis using an immunofluorescence microscope.

Results: The full range XPS spectra and fitting results indicated that the surface of fluoride ion-implanted titanium was the mixture of titanium dioxide and titanium trifluoride. Meanwhile, the quantity of focal adhesion plaque on fluoride ion-implanted titanium was more than that on the non-implanted titanium after 6 hours' cell culture.

Conclusion: The XPS data revealed that the modified surface layer of fluoride ion-implanted titanium contained titanium dioxide and titanium trifluoride, which could enhance the formation of focal adhesion plaque.

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