Subsets of mammalian adult stem cells reside in the quiescent state for prolonged periods of time. This state, which is reversible, has long been viewed as dormant and with minimal basal activity. Recent advances in adult stem cell isolation have provided insights into the epigenetic, transcriptional and post-transcriptional control of quiescence and suggest that quiescence is an actively maintained state in which signalling pathways are involved in maintaining a poised state that allows rapid activation. Deciphering the molecular mechanisms regulating adult stem cell quiescence will increase our understanding of tissue regeneration mechanisms and how they are dysregulated in pathological conditions and in ageing. © 2013 Macmillan Publisher...
All organisms have cells that are capable of exiting the normal cell cycle and entering a non-prolif...
<div><p>Stem cells resident in adult tissues are principally quiescent, yet harbor enormous capacity...
Summary: Muscle stem cells (MuSCs) persist in a quiescent state and activate in response to specific...
Development, tissue renewal and longevity of multi-cellular organisms require the ability to switch ...
Cells of unicellular and multicellular eukaryotes can respond to certain environmental cues by arres...
This review article discusses the epigenetic regulation of quiescent stem cells. Quiescent stem cell...
© 2020 Elsevier Inc. Quiescence is a state of reversible proliferative arrest in which cells are not...
The immense number of cells in our body came from one fertilized egg, which meant that many division...
The mechanisms by which quiescent cells, including adult stem cells, preserve their ability to resum...
Blood-forming hematopoietic stem cells (HSCs) ensure production of all mature blood cells during hom...
In complex organisms, stem cells are key for tissue maintenance and regeneration. Adult stem cells r...
Many of the cells in our bodies are quiescent, that is, temporarily not dividing. Under certain phys...
Both being dormant cellular states, quiescence and senescence are traditionally considered distinct....
BACKGROUND: Aging tissues lose their homeostatic and regenerative capacities, which has been linked ...
All organisms have cells that are capable of exiting the normal cell cycle and entering a non-prolif...
All organisms have cells that are capable of exiting the normal cell cycle and entering a non-prolif...
<div><p>Stem cells resident in adult tissues are principally quiescent, yet harbor enormous capacity...
Summary: Muscle stem cells (MuSCs) persist in a quiescent state and activate in response to specific...
Development, tissue renewal and longevity of multi-cellular organisms require the ability to switch ...
Cells of unicellular and multicellular eukaryotes can respond to certain environmental cues by arres...
This review article discusses the epigenetic regulation of quiescent stem cells. Quiescent stem cell...
© 2020 Elsevier Inc. Quiescence is a state of reversible proliferative arrest in which cells are not...
The immense number of cells in our body came from one fertilized egg, which meant that many division...
The mechanisms by which quiescent cells, including adult stem cells, preserve their ability to resum...
Blood-forming hematopoietic stem cells (HSCs) ensure production of all mature blood cells during hom...
In complex organisms, stem cells are key for tissue maintenance and regeneration. Adult stem cells r...
Many of the cells in our bodies are quiescent, that is, temporarily not dividing. Under certain phys...
Both being dormant cellular states, quiescence and senescence are traditionally considered distinct....
BACKGROUND: Aging tissues lose their homeostatic and regenerative capacities, which has been linked ...
All organisms have cells that are capable of exiting the normal cell cycle and entering a non-prolif...
All organisms have cells that are capable of exiting the normal cell cycle and entering a non-prolif...
<div><p>Stem cells resident in adult tissues are principally quiescent, yet harbor enormous capacity...
Summary: Muscle stem cells (MuSCs) persist in a quiescent state and activate in response to specific...