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Bone healing at implants with different surface configurations: an experimental study in dogs.

Marco Beolchini1, Niklaus P Lang2, Gerardo Gómez Moreno3

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Summary

Fluoroboric acid treatment of titanium implants significantly improved bone-to-implant contact and osseointegration. This surface modification enhances healing in both conventional and defect sites, promoting better dental implant success.

Keywords:
E.R.E.Implant dentistryanimal studybone augmentationbone healingbone widthbuccal bony platedental implantshistologyridge expansionsplit crest

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Area of Science:

  • Biomaterials science
  • Dental implantology
  • Surface chemistry

Background:

  • Osseointegration is crucial for dental implant success.
  • Surface modifications can enhance implant-host bone integration.
  • Titanium implants are widely used in dentistry.

Purpose of the Study:

  • To evaluate osseointegration of titanium implants with novel surface modifications.
  • To assess the effect of fluoroboric acid and H2O2 treatments on implant surfaces.
  • To compare implant performance in conventional sites versus marginal defects.

Main Methods:

  • Four implant surface types were tested: ZirTi®, fluoroboric acid-treated, and two H2O2-treated variations.
  • Implants were placed in foxhound dog mandibles, including sites with marginal defects.
  • Histological analysis was performed at 1 and 3 months post-implantation.

Main Results:

  • After 3 months, fluoroboric acid-treated implants showed significantly higher bone-to-implant contact (84.1%) compared to the control.
  • In marginal defect sites, fluoroboric acid alone yielded the greatest bone formation (1.93 mm).
  • Conventional sites showed bone formation between 68.5% and 74.9% after 1 month.

Conclusions:

  • Fluoroboric acid treatment of titanium implant surfaces enhances osseointegration.
  • This surface modification improves osteoconductivity, particularly in challenging defect sites.
  • The findings suggest a promising approach for improving dental implant outcomes.