| Literature DB >> 24158334 |
Abstract
Osseointegration-based dental implants have become a well-accepted treatment modality for complete and partial edentulism. The success of this treatment largely depends on the stable integration and maintenance of implant fixtures in alveolar bone; however, the molecular and cellular mechanisms regulating this unique tissue reaction have not yet been fully uncovered. Radiographic and histologic observations suggest the sustained retention of peri-implant bone without an apparent susceptibility to catabolic bone remodeling; therefore, implant-induced bone formation continues to be intensively investigated. Increasing numbers of whole-genome transcriptome studies suggest complex molecular pathways that may play putative roles in osseointegration. This review highlights genetic networks related to bone quality, the transient chondrogenic phase, the vitamin D axis, and the peripheral circadian rhythm to elute the regulatory mechanisms underlying the establishment and maintenance of osseointegration.Entities:
Keywords: bone remodeling; cartilage matrix protein; circadian rhythm; dental implants; gene expression; microarray analysis
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Year: 2013 PMID: 24158334 PMCID: PMC3827622 DOI: 10.1177/0022034513504928
Source DB: PubMed Journal: J Dent Res ISSN: 0022-0345 Impact factor: 6.116