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Effect Of A Tunnel-Structured Beta-Tricalcium Phosphate Graft Material On Periodontal Regeneration: A Pilot Study In A Canine One-Wall Intrabony Defect Model

JOURNAL OF PERIODONTAL RESEARCH(2015)

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摘要
Background and ObjectiveTissue regeneration is affected by the porosity, chemical properties and geometric structure of graft materials. Regeneration of severe periodontal defects, such as one-wall intrabony defects, is difficult because of reduced tissue support, and bone grafts are commonly used in such cases. In the present study, a tunnel-structured -tricalcium phosphate (tunnel -TCP) graft material designed to stimulate bone formation was fabricated. The objective of this pilot study was to evaluate the effect of this graft material on periodontal regeneration in one-wall intrabony defects in dogs.Material and MethodsSix male beagle dogs were used in this study. First, the mandibular second and third incisors were extracted. Experimental surgery was performed 12wk after tooth extraction. Bilateral 4x8mm (widthxdepth) one-wall intrabony defects were created in the mesial side of the mandibular canines. At the experimental sites, the defects were filled with tunnel -TCP, whereas the control defects were left empty. Twelve weeks after surgery, qualitative and quantitative histological analyses were performed.ResultsThere were no signs of clinical inflammation 12wk after surgery. Coronal extension indicative of new bone formation was higher at the experimental sites than at the control sites, although the differences between both the sites in the newly formed cementum and connective tissue attachment were not significant. Newly formed periodontal ligament and cementum-like tissue were evident along the root surface at the experimental sites. The inner surface of the tunnels was partially resorbed and replaced with new bone. New blood vessels were observed inside the lumens of tunnel -TCP.ConclusionTunnel -TCP serves as a scaffold for new bone formation in one-wall intrabony defects.
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关键词
intrabony defects, periodontal regeneration, tissue engineering, -tricalcium phosphate
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