Investigations into stem cell-fueled renewal of an organ benefit from an inventory of cell type-specific markers and a deep understanding of the cellular diversity within stem cell niches. Using the adult mouse incisor as a model for a continuously renewing organ, we performed an unbiased analysis of gene co-expression relationships to identify modules of co-expressed genes that represent differentiated cells, transit-amplifying cells, and residents of stem cell niches. Through in vivo lineage tracing, we demonstrated the power of this approach by showing that co-expression module members Lrig1 and Igfbp5 define populations of incisor epithelial and mesenchymal stem cells. We further discovered that two adjacent mesenchymal tissues, the per...
The classical model of tissue renewal posits that small numbers of quiescent stem cells (SCs) give r...
The classical model of tissue renewal posits that small numbers of quiescent stem cells (SCs) give r...
Dental epithelial stem cells (DESCs) drive continuous growth in the adult mouse incisors. To date, a...
Investigations into stem cell-fueled renewal of an organ benefit from an inventory of cell type-spec...
Investigations into stem cell-fueled renewal of an organ benefit from an inventory of cell type-spec...
The rodent incisor is one of a number of organs that grow continuously throughout the life of an ani...
Epithelial stem cells reside in specific niches that regulate their self-renewal and differentiation...
This project utilises the continuously-growing mouse incisor as a model to study mesenchymal stem ce...
Understanding the cellular and molecular mechanisms that underlie tooth regeneration and renewal has...
In mice, the incisors grow throughout the animal's life, and this continuous renewal is driven by de...
The dental pulp is known to be highly heterogenous, comprising distinct cell types including mesench...
AbstractUnderstanding the cellular and molecular mechanisms underlying the self-renewal and differen...
Objectives: The Order Rodentia is characterized, in part, by their continuously erupting or renewing...
SummaryThe continuously growing mouse incisor serves as a valuable model to study stem cell regulati...
The mouse incisor is a valuable but under-utilized model organ for studying the behavior of adult st...
The classical model of tissue renewal posits that small numbers of quiescent stem cells (SCs) give r...
The classical model of tissue renewal posits that small numbers of quiescent stem cells (SCs) give r...
Dental epithelial stem cells (DESCs) drive continuous growth in the adult mouse incisors. To date, a...
Investigations into stem cell-fueled renewal of an organ benefit from an inventory of cell type-spec...
Investigations into stem cell-fueled renewal of an organ benefit from an inventory of cell type-spec...
The rodent incisor is one of a number of organs that grow continuously throughout the life of an ani...
Epithelial stem cells reside in specific niches that regulate their self-renewal and differentiation...
This project utilises the continuously-growing mouse incisor as a model to study mesenchymal stem ce...
Understanding the cellular and molecular mechanisms that underlie tooth regeneration and renewal has...
In mice, the incisors grow throughout the animal's life, and this continuous renewal is driven by de...
The dental pulp is known to be highly heterogenous, comprising distinct cell types including mesench...
AbstractUnderstanding the cellular and molecular mechanisms underlying the self-renewal and differen...
Objectives: The Order Rodentia is characterized, in part, by their continuously erupting or renewing...
SummaryThe continuously growing mouse incisor serves as a valuable model to study stem cell regulati...
The mouse incisor is a valuable but under-utilized model organ for studying the behavior of adult st...
The classical model of tissue renewal posits that small numbers of quiescent stem cells (SCs) give r...
The classical model of tissue renewal posits that small numbers of quiescent stem cells (SCs) give r...
Dental epithelial stem cells (DESCs) drive continuous growth in the adult mouse incisors. To date, a...