Article

In vivo evaluation of resorbable bone graft substitutes in mandibular sockets of the beagle.

School of Dentistry, College of Oral Medicine, Taipei Medical University, Taipei, Taiwan, Republic of China.
Journal of Biomedical Materials Research Part A (impact factor: 2.63). 05/2012; 100(10):2726-31. DOI:10.1002/jbm.a.34206 pp.2726-31
Source: PubMed

ABSTRACT Hydroxyapatite (Ca(10)(PO(4))(6)(OH)(2)), with its high biocompatibility and good bioaffinity, stimulates osteoconduction and is slowly replaced by the host bone after implantation. However, clinical use of HA as a bone substitute has proved problematic. It is difficult to prevent dispersion of the HA granules and to mold the granules into the desired shape. Calcium sulfate as a bone graft substitute is rapidly resorbed in vivo releasing calcium ions, but fails to provide a long-term, three-dimensional framework to support osteoconduction. The setting properties of calcium sulfate, however, allow it to be applied in a slurry form, making it easier to handle and apply in different situations. This study examines the in vivo response of a (Hydroxyapatite, apatitic phase)/calcium sulfate dehydrate (CSD) composite using different ratios in the mandibular premolar sockets of the beagle. The HA (AP)/CSD composite materials prepared in ratios of 30/70, 50/50, and 70/30 were implanted into the mandibular premolar sockets for 5 and 10 weeks. The control socket was empty. The authors compared the radiographic properties and the changes in height and width of the mandibular premolar sockets in the beagle. The composite graft in the 30/70 ratio had the best ability to form new bones.

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Keywords

AP)/CSD composite materials
 
apatitic phase)/calcium sulfate dehydrate
 
bone graft substitute
 
bone substitute
 
calcium ions
 
calcium sulfate
 
clinical use
 
control socket
 
desired shape
 
form new bones
 
good bioaffinity
 
granules
 
host bone
 
long-term
 
mandibular premolar sockets
 
mold
 
setting properties
 
slurry form
 
study examines
 
three-dimensional framework