[[abstract]]Epidermal stem cells residing in different locations in the skin continuously self-renew and differentiate into distinct cell lineages to maintain skin homeostasis during postnatal life. Murine epidermal stem cells located at the bulge region are responsible for replenishing the hair lineage, while the stem cells at the isthmus regenerate interfollicular epidermis and sebaceous glands. In vitro cell culture and In vivo animal studies have implicated TGF-β signaling in the maintenance of epidermal and hair cycle homeostasis. Here, we employed a triple transgenic animal model that utilizes a combined Cre/loxP and rtTA/TRE system to allow inducible and reversible inhibition of TGF-β signaling in hair follicle lineages and suprabasa...
Distinct stem cell populations are present in the skin that comprises the epidermis and the piloseba...
Summary Tissue homeostasis is achieved through a balance of cell production (growth) and elimination...
Tissue homeostasis is achieved through a balance of cell production (growth) and elimination (regres...
[[abstract]]Epidermal stem cells residing in different locations in the skin continuously self-renew...
AbstractEpidermal stem cells residing in different locations in the skin continuously self-renew and...
Transforming growth factor-β (TGF-β) appears to promote the regression phase of the mammalian hair c...
SummaryHair follicle (HF) regeneration begins when communication between quiescent epithelial stem c...
AbstractHair follicle development serves as an excellent model to study control of organ morphogenes...
Mammalian epidermis is a highly dynamic epithelium comprising the interfollicular epidermis, hair fo...
Notch signaling involves ligand-receptor interactions through direct cell-cell contact. Multiple Not...
Adult mammalian epidermis contains multiple stem cell populations in which quiescent and more prolif...
[[abstract]]BACKGROUND: Notch signaling involves ligand-receptor interactions through direct cell-ce...
Adult mammalian epidermis contains multiple stem cell populations in which quiescent and more prolif...
Background: Notch signaling involves ligand-receptor interactions through direct cell-cell contact. ...
Hair follicle stem cells are regulated by dermal papilla fibroblasts, their principal signaling nich...
Distinct stem cell populations are present in the skin that comprises the epidermis and the piloseba...
Summary Tissue homeostasis is achieved through a balance of cell production (growth) and elimination...
Tissue homeostasis is achieved through a balance of cell production (growth) and elimination (regres...
[[abstract]]Epidermal stem cells residing in different locations in the skin continuously self-renew...
AbstractEpidermal stem cells residing in different locations in the skin continuously self-renew and...
Transforming growth factor-β (TGF-β) appears to promote the regression phase of the mammalian hair c...
SummaryHair follicle (HF) regeneration begins when communication between quiescent epithelial stem c...
AbstractHair follicle development serves as an excellent model to study control of organ morphogenes...
Mammalian epidermis is a highly dynamic epithelium comprising the interfollicular epidermis, hair fo...
Notch signaling involves ligand-receptor interactions through direct cell-cell contact. Multiple Not...
Adult mammalian epidermis contains multiple stem cell populations in which quiescent and more prolif...
[[abstract]]BACKGROUND: Notch signaling involves ligand-receptor interactions through direct cell-ce...
Adult mammalian epidermis contains multiple stem cell populations in which quiescent and more prolif...
Background: Notch signaling involves ligand-receptor interactions through direct cell-cell contact. ...
Hair follicle stem cells are regulated by dermal papilla fibroblasts, their principal signaling nich...
Distinct stem cell populations are present in the skin that comprises the epidermis and the piloseba...
Summary Tissue homeostasis is achieved through a balance of cell production (growth) and elimination...
Tissue homeostasis is achieved through a balance of cell production (growth) and elimination (regres...