Adult stem cells are crucial for physiological tissue renewal and regeneration after injury. Prevailing models assume the existence of a single quiescent population of stem cells residing in a specialized niche of a given tissue. Emerging evidence indicates that both quiescent (out of cell cycle and in a lower metabolic state) and active (in cell cycle and not able to retain DNA labels) stem cell subpopulations may coexist in several tissues, in separate yet adjoining locations. Here, we summarize these findings and propose that quiescent and active stem cell populations have separate but cooperative functional roles
The adult mouse subependymal zone provides a niche for mammalian neural stem cells (NSCs). However, ...
In this issue, Wilson et al. (2008) demonstrate that there are two functional subsets of hematopoiet...
Adult stem cells are essential to maintain regenerative tissues such as skin epidermis, gastrointest...
Adult stem cells are crucial for physiological tissue renewal and regeneration after injury. Prevail...
Cells of unicellular and multicellular eukaryotes can respond to certain environmental cues by arres...
As stem cells (SCs) in adult organs continue to be identified and characterized, it becomes clear th...
Subsets of mammalian adult stem cells reside in the quiescent state for prolonged periods of time. T...
Stem cell niches are able to maintain stable populations of stem cells allowing stem cell self-renew...
In adult tissues, an exquisite balance exists between stem cell proliferation and the generation of ...
Most tissues in our bodies undergo constant cellular turnover. This process requires a dynamic balan...
SummaryMost tissues in our bodies undergo constant cellular turnover. This process requires a dynami...
The shift between a proliferating and a nonproliferating state is associated with significant change...
Summary: Deciphering the mechanisms that regulate the quiescence of adult neural stem cells (NSCs) i...
Adult stem cells are essential to maintain regenerative tissues such as skin epidermis, gastrointest...
The mechanisms that regulate the balance between stem cell duplication and differentiation in adult ...
The adult mouse subependymal zone provides a niche for mammalian neural stem cells (NSCs). However, ...
In this issue, Wilson et al. (2008) demonstrate that there are two functional subsets of hematopoiet...
Adult stem cells are essential to maintain regenerative tissues such as skin epidermis, gastrointest...
Adult stem cells are crucial for physiological tissue renewal and regeneration after injury. Prevail...
Cells of unicellular and multicellular eukaryotes can respond to certain environmental cues by arres...
As stem cells (SCs) in adult organs continue to be identified and characterized, it becomes clear th...
Subsets of mammalian adult stem cells reside in the quiescent state for prolonged periods of time. T...
Stem cell niches are able to maintain stable populations of stem cells allowing stem cell self-renew...
In adult tissues, an exquisite balance exists between stem cell proliferation and the generation of ...
Most tissues in our bodies undergo constant cellular turnover. This process requires a dynamic balan...
SummaryMost tissues in our bodies undergo constant cellular turnover. This process requires a dynami...
The shift between a proliferating and a nonproliferating state is associated with significant change...
Summary: Deciphering the mechanisms that regulate the quiescence of adult neural stem cells (NSCs) i...
Adult stem cells are essential to maintain regenerative tissues such as skin epidermis, gastrointest...
The mechanisms that regulate the balance between stem cell duplication and differentiation in adult ...
The adult mouse subependymal zone provides a niche for mammalian neural stem cells (NSCs). However, ...
In this issue, Wilson et al. (2008) demonstrate that there are two functional subsets of hematopoiet...
Adult stem cells are essential to maintain regenerative tissues such as skin epidermis, gastrointest...