Stem cells are essential for the regeneration and homeostasis of many organs, such as tooth, hair, skin, and intestine. Although human tooth regeneration is limited, a number of animals have evolved continuously growing teeth that provide models of stem cell-based organ renewal. A well-studied model is the mouse incisor, which contains dental epithelial stem cells in structures known as cervical loops. These stem cells produce progeny that proliferate and migrate along the proximo-distal axis of the incisor and differentiate into enamel-forming ameloblasts. Here, we studied the role of E-cadherin in behavior of the stem cells and their progeny. Levels of E-cadherin are highly dynamic in the incisor, such that E-cadherin is expressed in the ...
Restricted until 22 Aug. 2011.Mouse incisors grow continuously throughout life. This growth is suppo...
Enamel is secreted by ameloblasts derived from tooth epithelial stem cells (SCs). Humans cannot repa...
SummaryThe continuously growing mouse incisor serves as a valuable model to study stem cell regulati...
AbstractStem cells are essential for the regeneration and homeostasis of many organs, such as tooth,...
Epithelial stem cells reside in specific niches that regulate their self-renewal and differentiation...
Dental epithelial stem cells (DESCs) drive continuous growth in the adult mouse incisors. To date, a...
Cell adhesion molecules play essential roles in the development and disease of tooth and oral struct...
To investigate the expression patterns of E-cadherin and P-cadherin in murinetooth germs at early de...
Epithelial stem cells reside in specific niches that regulate their self-renewal and differentiation...
The rodent incisor is one of a number of organs that grow continuously throughout the life of an ani...
N-cadherin is a cell-cell adhesion molecule and deletion of N-cadherin in mice is embryonic lethal. ...
AbstractUnderstanding the cellular and molecular mechanisms underlying the self-renewal and differen...
N-cadherin is a cell-cell adhesion molecule and deletion of N-cadherin in mice is embryonic lethal. ...
Background: N-cadherin is a cell-cell adhesion molecule and deletion of N-cadherin in mice is embryo...
Understanding the cellular and molecular mechanisms that underlie tooth regeneration and renewal has...
Restricted until 22 Aug. 2011.Mouse incisors grow continuously throughout life. This growth is suppo...
Enamel is secreted by ameloblasts derived from tooth epithelial stem cells (SCs). Humans cannot repa...
SummaryThe continuously growing mouse incisor serves as a valuable model to study stem cell regulati...
AbstractStem cells are essential for the regeneration and homeostasis of many organs, such as tooth,...
Epithelial stem cells reside in specific niches that regulate their self-renewal and differentiation...
Dental epithelial stem cells (DESCs) drive continuous growth in the adult mouse incisors. To date, a...
Cell adhesion molecules play essential roles in the development and disease of tooth and oral struct...
To investigate the expression patterns of E-cadherin and P-cadherin in murinetooth germs at early de...
Epithelial stem cells reside in specific niches that regulate their self-renewal and differentiation...
The rodent incisor is one of a number of organs that grow continuously throughout the life of an ani...
N-cadherin is a cell-cell adhesion molecule and deletion of N-cadherin in mice is embryonic lethal. ...
AbstractUnderstanding the cellular and molecular mechanisms underlying the self-renewal and differen...
N-cadherin is a cell-cell adhesion molecule and deletion of N-cadherin in mice is embryonic lethal. ...
Background: N-cadherin is a cell-cell adhesion molecule and deletion of N-cadherin in mice is embryo...
Understanding the cellular and molecular mechanisms that underlie tooth regeneration and renewal has...
Restricted until 22 Aug. 2011.Mouse incisors grow continuously throughout life. This growth is suppo...
Enamel is secreted by ameloblasts derived from tooth epithelial stem cells (SCs). Humans cannot repa...
SummaryThe continuously growing mouse incisor serves as a valuable model to study stem cell regulati...