Single-cell transcriptomics has recently emerged as a powerful tool to analyze cellular heterogeneity, discover new cell types, and infer putative differentiation routes. The technique has been rapidly embraced by the hematopoiesis research community, and like other technologies before, single-cell molecular profiling is widely expected to make important contributions to our understanding of the hematopoietic hierarchy. Much of this new interpretation relies on inference of the transcriptomic landscape as a representation of existing cellular states and associated transitions among them. Here we review how this model allows, under certain assumptions, charting of time-resolved differentiation trajectories with unparalleled resolution and ho...
International audienceBackground: Mature blood cells arise from hematopoietic stem cells in the bone...
Cancer is a leading cause of death worldwide. While most cells have a limited lifespan, cancer stem ...
The success of marker-based approaches for dissecting haematopoiesis in mouse and human is reliant o...
Maintenance of the blood system requires balanced cell fate decisions by hematopoietic stem and prog...
Hematopoiesis is one of the best studied adult stem-cell systems, with a differentiation hierarchy p...
Haematopoietic stem and progenitor cells (HSPCs) sit at the top of the haematopoietic hierarchy, and...
Maintenance of the blood system requires balanced cell-fate decisions of haematopoietic stem and pro...
Technological advances play a key role in furthering our understanding of stem cell biology, and adv...
The hematopoietic system is well established as a paradigm for the study of cellular hierarchies, th...
The transcriptional programs that govern hematopoiesis have been investigated primarily by populatio...
Developmental hematopoiesis differs from adult and is far less described. In the developing embryo, ...
Abstract Hematopoiesis is probably the best-understood stem cell differentiation system; hematopoiet...
Hematopoietic stem cell research has made tremendous progress over the last decades, and blood has b...
International audienceSingle-cell transcriptomic technologies enable the uncovering and characteriza...
International audienceBackground: Mature blood cells arise from hematopoietic stem cells in the bone...
Cancer is a leading cause of death worldwide. While most cells have a limited lifespan, cancer stem ...
The success of marker-based approaches for dissecting haematopoiesis in mouse and human is reliant o...
Maintenance of the blood system requires balanced cell fate decisions by hematopoietic stem and prog...
Hematopoiesis is one of the best studied adult stem-cell systems, with a differentiation hierarchy p...
Haematopoietic stem and progenitor cells (HSPCs) sit at the top of the haematopoietic hierarchy, and...
Maintenance of the blood system requires balanced cell-fate decisions of haematopoietic stem and pro...
Technological advances play a key role in furthering our understanding of stem cell biology, and adv...
The hematopoietic system is well established as a paradigm for the study of cellular hierarchies, th...
The transcriptional programs that govern hematopoiesis have been investigated primarily by populatio...
Developmental hematopoiesis differs from adult and is far less described. In the developing embryo, ...
Abstract Hematopoiesis is probably the best-understood stem cell differentiation system; hematopoiet...
Hematopoietic stem cell research has made tremendous progress over the last decades, and blood has b...
International audienceSingle-cell transcriptomic technologies enable the uncovering and characteriza...
International audienceBackground: Mature blood cells arise from hematopoietic stem cells in the bone...
Cancer is a leading cause of death worldwide. While most cells have a limited lifespan, cancer stem ...
The success of marker-based approaches for dissecting haematopoiesis in mouse and human is reliant o...