Tissue homeostasis is achieved through a balance of cell production (growth) and elimination (regression). In contrast to tissue growth, the cells and molecular signals required for tissue regression remain unknown. To investigate physiological tissue regression, we use the mouse hair follicle, which cycles stereotypically between phases of growth and regression while maintaining a pool of stem cells to perpetuate tissue regeneration. Here we show by intravital microscopy in live mice that the regression phase eliminates the majority of the epithelial cells by two distinct mechanisms: terminal differentiation of suprabasal cells and a spatial gradient of apoptosis of basal cells. Furthermore, we demonstrate that basal epithelial cells colle...
AbstractIn adult skin, each hair follicle contains a reservoir of stem cells (the bulge), which can ...
Understanding how complex tissues are formed, maintained, and regenerated through local growth, diff...
Stem cells have the ability to self-renew and differentiate along multiple lineages, driving tissue ...
Tissue homeostasis is achieved through a balance of cell production (growth) and elimination (regres...
Summary Tissue homeostasis is achieved through a balance of cell production (growth) and elimination...
AbstractEpidermal stem cells residing in different locations in the skin continuously self-renew and...
[[abstract]]Epidermal stem cells residing in different locations in the skin continuously self-renew...
Adult mammalian epidermis contains multiple stem cell populations in which quiescent and more prolif...
Adult mammalian epidermis contains multiple stem cell populations in which quiescent and more prolif...
NoHere, we studied how epithelial energy metabolism impacts overall skin development by selectively ...
SummaryMost tissues in our bodies undergo constant cellular turnover. This process requires a dynami...
Here, we studied how epithelial energy metabolism impacts overall skin development by selectively de...
SummaryHere, we exploit the hair follicle to define the point at which stem cells (SCs) become irrev...
Stratified epithelia of mammals contain adult stem/progenitor cells that are instrumental for renewa...
Stem cells safeguard tissue homeostasis and guarantee tissue repair throughout life. The decision be...
AbstractIn adult skin, each hair follicle contains a reservoir of stem cells (the bulge), which can ...
Understanding how complex tissues are formed, maintained, and regenerated through local growth, diff...
Stem cells have the ability to self-renew and differentiate along multiple lineages, driving tissue ...
Tissue homeostasis is achieved through a balance of cell production (growth) and elimination (regres...
Summary Tissue homeostasis is achieved through a balance of cell production (growth) and elimination...
AbstractEpidermal stem cells residing in different locations in the skin continuously self-renew and...
[[abstract]]Epidermal stem cells residing in different locations in the skin continuously self-renew...
Adult mammalian epidermis contains multiple stem cell populations in which quiescent and more prolif...
Adult mammalian epidermis contains multiple stem cell populations in which quiescent and more prolif...
NoHere, we studied how epithelial energy metabolism impacts overall skin development by selectively ...
SummaryMost tissues in our bodies undergo constant cellular turnover. This process requires a dynami...
Here, we studied how epithelial energy metabolism impacts overall skin development by selectively de...
SummaryHere, we exploit the hair follicle to define the point at which stem cells (SCs) become irrev...
Stratified epithelia of mammals contain adult stem/progenitor cells that are instrumental for renewa...
Stem cells safeguard tissue homeostasis and guarantee tissue repair throughout life. The decision be...
AbstractIn adult skin, each hair follicle contains a reservoir of stem cells (the bulge), which can ...
Understanding how complex tissues are formed, maintained, and regenerated through local growth, diff...
Stem cells have the ability to self-renew and differentiate along multiple lineages, driving tissue ...