Molecular genetics of supernumerary tooth formation

Молекулярная генетика формирования сверхкомплектных зубов
Xiu‐Ping Wang, Jiabing Fan
2011-01-18

Apc inactivationWnt/β-catenin signalingmolecular geneticssupernumerary tooth formationtooth regeneration
Despite advances in the knowledge of tooth morphogenesis and differentiation, relatively little is known about the aetiology and molecular mechanisms underlying supernumerary tooth formation. A small number of supernumerary teeth may be a common developmental dental anomaly, while multiple supernumerary teeth usually have a genetic component and they are sometimes thought to represent a partial third dentition in humans. Mice, which are commonly used for studying tooth development, only exhibit one dentition, with very few mouse models exhibiting supernumerary teeth similar to those in humans. Inactivation of Apc or forced activation of Wnt/β(catenin signalling results in multiple supernumerary tooth formation in both humans and in mice, but the key genes in these pathways are not very clear. Analysis of other model systems with continuous tooth replacement or secondary tooth formation, such as fish, snake, lizard, and ferret, is providing insights into the molecular and cellular mechanisms underlying succesional tooth development, and will assist in the studies on supernumerary tooth formation in humans. This information, together with the advances in stem cell biology and tissue engineering, will pave ways for the tooth regeneration and tooth bioengineering.
1
Apc inactivation or forced Wnt/β-catenin activation induces multiple supernumerary teeth in both humans and mice.
2
Combining these molecular insights with stem-cell biology and tissue engineering may enable future tooth regeneration and bioengineering.
3
Comparative studies of animals with continuous tooth replacement or secondary tooth formation are revealing mechanisms of successional tooth development relevant to human supernumerary teeth.
4
Multiple supernumerary teeth are sometimes interpreted as evidence of a partial third dentition in humans.
5
Small numbers of supernumerary teeth may represent a common developmental dental anomaly, whereas multiple teeth usually involve genetic factors.
6
The specific key genes within the Apc and Wnt/β-catenin pathways remain unclear.

Supernumerary tooth formation in humans and mice

The genetic, molecular, and cellular mechanisms underlying supernumerary tooth formation, including the roles of Apc and Wnt/β-catenin signaling

Publication Details
Publication Date
2011-01-18
Journal
Publisher
ISSN
Access Type
Author Information
Authors
Xiu‐Ping Wang
Jiabing Fan
Explore further
Open the scid.ai AI chat with a ready-made request: it will find papers on a similar topic and help build a literature review.
Find similar papers in the chat
Make a presentation
100%