Loss of Stemness, EMT, and Supernumerary Tooth Formation in Cebpb−/−Runx2+/− Murine Incisors
Adult Cebpb KO mice incisors present amelogenin-positive epithelium pearls, enamel and dentin allopathic hyperplasia, fewer Sox2 -positive cells in labial cervical loop epitheliums, and reduced Sox2 expression in enamel epithelial stem cells. Thus, Cebpb acts upstream of Sox2 to regulate stemness. I...
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Veröffentlicht in: | Scientific reports 2018-03, Vol.8 (1), p.5169-13, Article 5169 |
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Sprache: | eng |
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Zusammenfassung: | Adult
Cebpb
KO mice incisors present amelogenin-positive epithelium pearls, enamel and dentin allopathic hyperplasia, fewer
Sox2
-positive cells in labial cervical loop epitheliums, and reduced
Sox2
expression in enamel epithelial stem cells. Thus,
Cebpb
acts upstream of
Sox2
to regulate stemness. In this study,
Cebpb
KO mice demonstrated cementum-like hard tissue in dental pulp, loss of polarity by ameloblasts, enamel matrix in ameloblastic layer, and increased expression of epithelial-mesenchymal transition (EMT) markers in a
Cebpb
knockdown mouse enamel epithelial stem cell line.
Runx2
knockdown in the cell line presented a similar expression pattern. Therefore, the EMT enabled disengaged odontogenic epithelial stem cells to develop supernumerary teeth.
Cebpb
and
Runx2
knockdown in the cell line revealed higher
Biglycan
and
Decorin
expression, and
Decorin
-positive staining in the periapical region, indicating their involvement in supernumerary tooth formation.
Cebpb
and
Runx2
acted synergistically and played an important role in the formation of supernumerary teeth in adult incisors. |
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ISSN: | 2045-2322 2045-2322 |
DOI: | 10.1038/s41598-018-23515-y |