Early bone response to sandblasted, dual acid-etched and H(2)O(2)/HCl treated titanium implants: an experimental study in the rabbit.

F M He, G L Yang, Y N Li, X X Wang, S F Zhao

Department of Implantology, The Affiliated Stomatologic Hospital, College of Medical Sciences, Zhejiang University, Yan'an Road, Hangzhou, China.

Journal Article: International Journal of Oral and Maxillofacial Surgery (impact factor: 1.44). 05/2009; DOI: 10.1016/j.ijom.2009.03.716

Abstract

The aim of this study was to evaluate the influence of a roughened H(2)O(2)/HCl heat-treated titanium surface on peri-implant bone formation at an early stage in vivo. 24 Ti(6)Al(4)V alloy implants were used; half were treated by sandblasted and dual acid-etched treatments (control group), while the others were treated by sandblasted, dual acid-etched and H(2)O(2)/HCl heat treatments (test group). The morphology and roughness were analyzed by field emission SEM and atomic force microscopy. The implants were inserted into the femora of 12 adult white rabbits. After 2 and 4 weeks, femora block specimens were prepared for histological and histomorphometric analysis. SEM micrographs showed that multilevel and different sized pits were formed on both surfaces. New bone formation was observed on both implant surfaces. Test implants demonstrated a greater mean percentage of bone-implant contact as compared with controls at 2 (46.84 vs. 41.81, p=0.000) and 4 weeks (49.43 vs. 44.87, p=0.006) of healing. It is concluded that the H(2)O(2)/HCl heat-treated rough titanium surface promoted enhanced bone apposition during the early stages of new bone formation around the implant.

Source: PubMed

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Keywords

12 adult white rabbits
 
4 weeks
 
atomic force microscopy
 
bone apposition
 
bone-implant contact
 
control group
 
different sized pits
 
dual acid-etched
 
dual acid-etched treatments
 
femora block specimens
 
field emission SEM
 
H(2)O(2)/HCl heat-treated rough titanium surface
 
histomorphometric analysis
 
implant
 
implant surfaces
 
implants
 
new bone formation
 
peri-implant bone formation
 
roughened H(2)O(2)/HCl heat-treated titanium surface
 
Test implants