Localization of Runx2, Osterix, and Osteopontin in Tooth Root Formation in Rat Molars
Author(s) -
Azumi Hirata,
Toshio Sugahara,
Hiroaki Nakamura
Publication year - 2008
Publication title -
journal of histochemistry and cytochemistry
Language(s) - English
Resource type - Journals
eISSN - 1551-5044
pISSN - 0022-1554
DOI - 10.1369/jhc.2008.952192
Subject(s) - cementoblast , cementum , runx2 , osteopontin , bone sialoprotein , cementogenesis , chemistry , dental cementum , microbiology and biotechnology , osteoprotegerin , dental alveolus , anatomy , osteoblast , osteocalcin , dentistry , biology , endocrinology , dentin , medicine , alkaline phosphatase , biochemistry , activator (genetics) , gene , in vitro , enzyme
Cementogenesis starts with the differentiation of cementoblasts. Mature cementoblasts secrete cementum matrix. Cementum components are similar to bone; moreover, cementoblasts possess many characteristics similar to those of osteoblasts. Runx2 and osterix, the transcriptional factors for osteoblast differentiation, participate in tooth formation. However, the characteristics of Runx2 and osterix during the differentiation process of cementoblasts remain unclear. In this study, we examined the immunolocalization patterns of Runx2, osterix, and osteopontin during rat molar tooth formation. Periodontal ligament cells and osteoblasts located on the alveolar bone surface showed immunoreactivity for Runx2. Colocalization of Runx2 and osterix was detected in cementoblasts, which penetrated the ruptured Hertwig's epithelial root sheath and attached to root dentin. Moreover, osteopontin was observed in Runx2-positive cementoblasts facing the root surface. However, the cells adjacent to cementoblasts showed only Runx2 reactivity. Neither Runx2 nor osterix was seen in cementocytes. These results suggest that both Runx2 and osterix are important for differentiation into cementoblasts. Additionally, osterix may be indispensable for transcription of osteopontin expression.
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