Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

Pivotal Role of Tenascin-W (-N) in Postnatal Incisor Growth and Periodontal Ligament Remodeling

View through CrossRef
The continuously growing mouse incisor provides a fascinating model for studying stem cell regulation and organ renewal. In the incisor, epithelial and mesenchymal stem cells assure lifelong tooth growth. The epithelial stem cells reside in a niche known as the cervical loop. Mesenchymal stem cells are located in the nearby apical neurovascular bundle and in the neural plexus. So far, little is known about extracellular cues that are controlling incisor stem cell renewal and guidance. The extracellular matrix protein tenascin-W, also known as tenascin-N (TNN), is expressed in the mesenchyme of the pulp and of the periodontal ligament of the incisor, and is closely associated with collagen 3 fibers. Here, we report for the first time the phenotype of tenascin-W/TNN deficient mice, which in a C57BL/6N background exhibit a reduced body weight and lifespan. We found major defects in the alveolar bone and periodontal ligament of the growing rodent incisors, whereas molars were not affected. The alveolar bone around the incisor was replaced by a dense scar-like connective tissue, enriched with newly formed nerve fibers likely leading to periodontal pain, less food intake and reduced body weight. Using soft food to reduce mechanical load on the incisor partially rescued the phenotype.In situhybridization and Gli1 reporter mouse experiments revealed decreased hedgehog signaling in the incisor mesenchymal stem cell compartment, which coordinates the development of mesenchymal stem cell niche. These results indicate that TNN deficiency in mice affects periodontal remodeling and increases nerve fiber branching. Through periodontal pain the food intake is reduced and the incisor renewal and the neurovascular sonic hedgehog secretion rate are reduced. In conclusion, tenascin-W/TNN seems to have a primary function in rapid periodontal tissue remodeling and a secondary function in mechanosensation.
Title: Pivotal Role of Tenascin-W (-N) in Postnatal Incisor Growth and Periodontal Ligament Remodeling
Description:
The continuously growing mouse incisor provides a fascinating model for studying stem cell regulation and organ renewal.
In the incisor, epithelial and mesenchymal stem cells assure lifelong tooth growth.
The epithelial stem cells reside in a niche known as the cervical loop.
Mesenchymal stem cells are located in the nearby apical neurovascular bundle and in the neural plexus.
So far, little is known about extracellular cues that are controlling incisor stem cell renewal and guidance.
The extracellular matrix protein tenascin-W, also known as tenascin-N (TNN), is expressed in the mesenchyme of the pulp and of the periodontal ligament of the incisor, and is closely associated with collagen 3 fibers.
Here, we report for the first time the phenotype of tenascin-W/TNN deficient mice, which in a C57BL/6N background exhibit a reduced body weight and lifespan.
We found major defects in the alveolar bone and periodontal ligament of the growing rodent incisors, whereas molars were not affected.
The alveolar bone around the incisor was replaced by a dense scar-like connective tissue, enriched with newly formed nerve fibers likely leading to periodontal pain, less food intake and reduced body weight.
Using soft food to reduce mechanical load on the incisor partially rescued the phenotype.
In situhybridization and Gli1 reporter mouse experiments revealed decreased hedgehog signaling in the incisor mesenchymal stem cell compartment, which coordinates the development of mesenchymal stem cell niche.
These results indicate that TNN deficiency in mice affects periodontal remodeling and increases nerve fiber branching.
Through periodontal pain the food intake is reduced and the incisor renewal and the neurovascular sonic hedgehog secretion rate are reduced.
In conclusion, tenascin-W/TNN seems to have a primary function in rapid periodontal tissue remodeling and a secondary function in mechanosensation.

Related Results

Tenascin-Y in the Developing and Adult Avian Nervous System
Tenascin-Y in the Developing and Adult Avian Nervous System
The glycoproteins tenascin-C and tenascin-R are abundant in the developing and adult nervous system, respectively. We have used a polyclonal antiserum to determine if tenascin-Y, a...
Novel tenascin variants with a distinctive pattern of expression in the avian embryo
Novel tenascin variants with a distinctive pattern of expression in the avian embryo
ABSTRACT Previous studies have shown that several forms of the glycoprotein tenascin are present in the embryonic extracellular matrix. These forms are the result of...
Morphological characteristics of the Lisfranc ligament
Morphological characteristics of the Lisfranc ligament
Abstract Background This study aimed to clarify the morphological characteristics of the Lisfranc ligament and the plantar ligament. Methods Forty legs from 20 cadavers w...
Tenascin variants: differential binding to fibronectin and distinct distribution in cell cultures and tissues.
Tenascin variants: differential binding to fibronectin and distinct distribution in cell cultures and tissues.
In the chicken, three tenascin variants have been characterized that are generated by alternative splicing of 3 of its 11 fibronectin type III repeats. Using monoclonal antibodies ...
Penyakit Periodontal pada Masa Kehamilan dan Perawatannya
Penyakit Periodontal pada Masa Kehamilan dan Perawatannya
Abstract: Hormonal changes occur during pregnancy and affect the response of periodontal tissue to local factors, therefore, the risk of periodontal disease increases. Dentists hav...
Magnetic Resonance Imaging Manifestations of Annular Ligament Injuries in Children With Monteggia Fractures
Magnetic Resonance Imaging Manifestations of Annular Ligament Injuries in Children With Monteggia Fractures
Background: Magnetic resonance imaging (MRI) is commonly performed in children with elbow injuries to visualize soft tissues such as the annular ligament. Herein, we in...
Marker of cemento‐periodontal ligament junction associated with periodontal regeneration
Marker of cemento‐periodontal ligament junction associated with periodontal regeneration
Objective:  The purpose of this study was to identify factors promoting formation of the cemento‐periodontal ligament junction.Background:  Regeneration of the cemento‐periodontal ...

Back to Top