Scinovex
articleTop 1% cited

Enhanced Bone Apposition to a Chemically Modified SLA Titanium Surface

Journal of Dental Research · 2004 · Vol. 83(7) · pp. 529–533
Daniel BuserNina BrogginiMarco WielandRobert SchenkAlain J. DenzerDavid L. CochranBritt HoffmannAdrian LussiS. Steinemann

Abstract

Increased surface roughness of dental implants has demonstrated greater bone apposition; however, the effect of modifying surface chemistry remains unknown. In the present study, we evaluated bone apposition to a modified sandblasted/acid-etched (modSLA) titanium surface, as compared with a standard SLA surface, during early stages of bone regeneration. Experimental implants were placed in miniature pigs, creating 2 circular bone defects. Test and control implants had the same topography, but differed in surface chemistry. We created the test surface by submerging the implant in an isotonic NaCl solution following acid-etching to avoid contamination with molecules from the atmosphere. Test implants demonstrated a significantly greater mean percentage of bone-implant contact as compared with controls at 2 (49.30 vs. 29.42%; p = 0.017) and 4 wks (81.91 vs. 66.57%; p = 0.011) of healing. At 8 wks, similar results were observed. It is concluded that the modSLA surface promoted enhanced bone apposition during early stages of bone regeneration.

Bone Tissue Engineering MaterialsDental Implant Techniques and OutcomesDental materials and restorationsAppositionTitaniumDentistryImplantOsseointegrationBiomedical engineeringSurface roughnessChemistryMaterials scienceMedicine

MeSH terms

AnimalsBone RegenerationDental Implantation, EndosseousMaxillaMetallurgySurface PropertiesSwineSwine, MiniatureTitaniumWound HealingDental ImplantsOsseointegrationDental Prosthesis DesignCoated Materials, Biocompatible
Citations
1,197
FWCI
19.76
field-weighted impact
References
20
Percentile
100%
vs. same field & year
Citations per year
References
Wetting of textured surfaces
Colloids and Surfaces A Physicochemical and Engineering Aspects · 2002 · 1,344 citations
Citation Network

How this paper connects to the literature. Drag to explore, click any node to open that paper.

Enhanced Bone Apposition to a Chemically Modified SLA Titanium Surface · Scinovex