Literature DB >> 23050778

Excessive Wnt/β-catenin signaling disturbs tooth-root formation.

C H Bae1, J Y Lee, T H Kim, J A Baek, J C Lee, X Yang, M M Taketo, R Jiang, E S Cho.   

Abstract

BACKGROUND AND
OBJECTIVE: Wingless-type MMTV integration site family (Wnt)/β-catenin signaling plays an essential role in cellular differentiation and matrix formation during skeletal development. However, little is known about its role in tooth-root formation. In a previous study, we found excessive formation of dentin and cementum in mice with constitutive β-catenin stabilization in the dental mesenchyme. In the present study we analyzed the molar roots of these mice to investigate the role of Wnt/β-catenin signaling in root formation in more detail.
MATERIAL AND METHODS: We generated OC-Cre:Catnb(+/lox(ex3)) mice by intercrossing Catnb(+/lox(ex3)) and OC-Cre mice, and we analyzed their mandibular molars using radiography, histomorphometry and immunohistochemistry.
RESULTS: OC-Cre:Catnb(+/lox(ex3)) mice showed impaired root formation. At the beginning of root formation in mutant molars, dental papilla cells did not show normal differentiation into odontoblasts; rather, they were prematurely differentiated and had a disorganized arrangement. Interestingly, SMAD family member 4 was upregulated in premature odontoblasts. In 4-wk-old mutant mice, molar roots were about half the length of those in their wild-type littermates. In contrast to excessively formed dentin in crown, root dentin was thin and hypomineralized in mutant mice. Biglycan and dentin sialophosphoprotein were downregulated in root dentin of mutant mice, whereas dentin matrix protein 1 and Dickkopf-related protein 1 were upregulated. Additionally, ectonucleotide pyrophosphatase/phosphodiesterase 1 was significantly downregulated in the cementoblasts of mutant molars. Finally, in the cementum of mutant mice, bone sialoprotein was downregulated but Dickkopf-related protein 2 was upregulated.
CONCLUSION: These results suggest that temporospatial regulation of Wnt/β-catenin signaling plays an important role in cell differentiation and matrix formation during root and cementum formation.
© 2012 John Wiley & Sons A/S. Published by John Wiley & Sons Ltd.

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Year:  2012        PMID: 23050778     DOI: 10.1111/jre.12018

Source DB:  PubMed          Journal:  J Periodontal Res        ISSN: 0022-3484            Impact factor:   4.419


  27 in total

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Review 2.  Cellular and molecular mechanisms of tooth root development.

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4.  An Nfic-hedgehog signaling cascade regulates tooth root development.

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Journal:  Development       Date:  2015-08-20       Impact factor: 6.868

Review 5.  Advances of Wnt signalling pathway in dental development and potential clinical application.

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Journal:  Organogenesis       Date:  2019-09-04       Impact factor: 2.500

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7.  Constitutive activation of β-catenin in odontoblasts induces aberrant pulp calcification in mouse incisors.

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Journal:  J Mol Histol       Date:  2021-03-10       Impact factor: 2.611

8.  Overlapping functions of bone sialoprotein and pyrophosphate regulators in directing cementogenesis.

Authors:  M Ao; M B Chavez; E Y Chu; K C Hemstreet; Y Yin; M C Yadav; J L Millán; L W Fisher; H A Goldberg; M J Somerman; B L Foster
Journal:  Bone       Date:  2017-09-01       Impact factor: 4.398

9.  Tooth eruption without roots.

Authors:  X-P Wang
Journal:  J Dent Res       Date:  2013-01-23       Impact factor: 6.116

Review 10.  On the cutting edge of organ renewal: Identification, regulation, and evolution of incisor stem cells.

Authors:  Jimmy Kuang-Hsien Hu; Vagan Mushegyan; Ophir D Klein
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