Understanding cell-fate decisions in stem cell populations is a major goal of modern biology. Stem and progenitor cell populations are often heterogeneous, which may reflect stem cell subsets that express subtly different properties, including different propensities for lineage selection upon differentiation, yet remain able to interconvert. We discuss these properties with examples both from the hematopoietic and embryonic stem cell (ESC) systems. The nature of the stem cell substates and their relationship to commitment to differentiate and lineage selection can be elucidated in terms of a landscape picture in which stable states can be defined mathematically as attractors
Summary: Pluripotent embryonic stem cells (ESCs) constitute the cell types of the adult vertebrate t...
The cell cycle and cell fate decisions are interlinked in a broad range of developmental contexts in...
Evidence from studies of the behaviour of stem and progenitor cells and of the influence of cytokine...
Understanding cell-fate decisions in stem cell populations is a major goal of modern biology. Stem a...
Understanding cell-fate decisions in stem cell populations is a major goal of modern biology. Stem a...
Within populations of cells, fate decisions are controlled by an indeterminate combination of cell-i...
Stem cell differentiation and the maintenance of self-renewal are intrinsically complex processes re...
Cell fate choice and commitment of multipotent progenitor cells to a differentiated lineage requires...
The hematopoietic stem cell (HSC) system is a demand control system, with the demand coming from the...
The hematopoietic stem cell (HSC) system is a demand control system, with the demand coming from the...
Models describing the process of stem-cell differentiation are plentiful, and may offer insights int...
The last few years have seen significant advances in our understanding of the molecular mechanisms o...
Many experimental findings on heterogeneity, flexibility, and plasticity of tissue stem cel...
Hematopoietic stem cells (HSC) have provided a model for the isolation, enrichment and transplantati...
Phenotypic evolutionary models have been used with great success in many areas of biology, but thus ...
Summary: Pluripotent embryonic stem cells (ESCs) constitute the cell types of the adult vertebrate t...
The cell cycle and cell fate decisions are interlinked in a broad range of developmental contexts in...
Evidence from studies of the behaviour of stem and progenitor cells and of the influence of cytokine...
Understanding cell-fate decisions in stem cell populations is a major goal of modern biology. Stem a...
Understanding cell-fate decisions in stem cell populations is a major goal of modern biology. Stem a...
Within populations of cells, fate decisions are controlled by an indeterminate combination of cell-i...
Stem cell differentiation and the maintenance of self-renewal are intrinsically complex processes re...
Cell fate choice and commitment of multipotent progenitor cells to a differentiated lineage requires...
The hematopoietic stem cell (HSC) system is a demand control system, with the demand coming from the...
The hematopoietic stem cell (HSC) system is a demand control system, with the demand coming from the...
Models describing the process of stem-cell differentiation are plentiful, and may offer insights int...
The last few years have seen significant advances in our understanding of the molecular mechanisms o...
Many experimental findings on heterogeneity, flexibility, and plasticity of tissue stem cel...
Hematopoietic stem cells (HSC) have provided a model for the isolation, enrichment and transplantati...
Phenotypic evolutionary models have been used with great success in many areas of biology, but thus ...
Summary: Pluripotent embryonic stem cells (ESCs) constitute the cell types of the adult vertebrate t...
The cell cycle and cell fate decisions are interlinked in a broad range of developmental contexts in...
Evidence from studies of the behaviour of stem and progenitor cells and of the influence of cytokine...