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Clin Oral Implants Res ; 29(10): 1038-1049, 2018 Oct.
Article in English | MEDLINE | ID: mdl-30267433

ABSTRACT

OBJECTIVE: This histomorphometric study compared bone regeneration potential of beta-tricalcium phosphate with fibronectin (ß-TCP-Fn) in critical-sized calvarial defects (CSDs) in rats to assess whether fibronectin (Fn) improved new bone formation. MATERIAL AND METHODS: Critical-sized calvarial defects were created in 30 adult male Sprague Dawley rats, which were divided into four groups according to the time of euthanasia (6 or 8 weeks of healing) and type of filling (ß-TCP-Fn/6 weeks, ß-TCP/6 weeks, ß-TCP-Fn/8 weeks and ß-TCP/8 weeks). The primary variables related to new bone formation were augmented area (AA) and gained tissue (GT; sum of mineralized bone matrix [MBM] and bone substitute [BS]). Secondary variables were the diameter of the defect, MBM, non-mineralized tissue (NMT) and BS. RESULTS: A total of 29 rats and 58 histological samples were evaluated, 28 (48.3%) samples obtained at 6 weeks and 30 (51.7%) at 8 weeks, homogeneously distributed between right and left sides. Thirteen (22.4%) were treated with ß-TCP-Fn, 16 (27.6%) with ß-TCP and 29 (50%) were controls. At 8 weeks, histomorphometric analysis showed significant differences in AA using ß-TCP and ß-TCP-Fn versus controls (p = 0.001 and p = 0.005, respectively). Bone turnover expressed as % within the target area was slightly higher but not statistically significant in the ß-TCP-Fn than in ß-TCP (MBM) at 6 weeks versus 8 weeks (p = 0.067 and p = 0.335, respectively). Finally, the total GT area in mm2 was higher using ß-TCP-Fn as compared to ß-TCP (p = 0.044). CONCLUSIONS: ß-TCP-Fn was slightly but non-significantly more effective than ß-TCP without Fn for improving the volume of regenerated bone in CSDs of rats, possibly allowing a more efficient bone remodelling process. This effect however should continue being investigated.


Subject(s)
Bone Substitutes/therapeutic use , Calcium Phosphates/therapeutic use , Fibronectins/therapeutic use , Guided Tissue Regeneration/methods , Animals , Bone Regeneration/drug effects , Male , Rats , Rats, Sprague-Dawley , Skull/physiology , Skull/surgery
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