Tissue and whole organ regeneration is a dramatic biological response to injury that occurs across different plant and animal phyla. It frequently requires the dedifferentiation of mature cells to a condensed mesenchymal blastema, from which replacement tissues develop. Human somatic cells cannot regenerate in this way and differentiation is considered irreversible under normal developmental conditions. Here, we sought to establish in vitro conditions to mimic blastema formation by generating different three-dimensional (3D) condensates of human mesenchymal stromal cells (MSCs). We identified specific 3D growth environments that were sufficient to dedifferentiate aged human MSCs to an early mesendoderm-like state with reversal of age-associ...
Abstract Direct cell reprogramming, also called transdifferentiation, allows for the reprogramming o...
Human embryonic stem cells (hESCs) are thought to have enormous potential for use in regenerative me...
Differentiating tissue stem cells can self-assemble into structures that strikingly resemble functio...
Tissue and whole organ regeneration is a dramatic biological response to injury that occurs across d...
Cells undergo reprogramming/de-differentiation through nuclear and cytoplasmic remodelling. Autophag...
Introduction: Bone marrow mesenchymal stem cells/multipotent stromal cells (MSCs) are recruited to s...
BACKGROUND AND METHODS: In this study, we utilized a combination of low oxygen tension and a novel a...
International audienceBackground In vitro cultivated stem cell populations are in general heterogene...
The development of in vitro models to screen the effect of different concentrations, combinations an...
The behavior of stem cells, when they work collectively, can be much more sophisticated than one mig...
Stimulating regeneration of complex tissue and organs after injury is one of curious topic that attr...
Abstract Background Dedifferentiation occurs naturally in mature cell types during epimorphic regene...
In contrast to mammals, lower vertebrates are capable of extraordinary myocardial regeneration thank...
We propose a method of expanding stem cells and dedifferentiating cells by cultruing cells with cell...
Cell replacement therapy holds a promising future in the treatment of degenerative diseases related ...
Abstract Direct cell reprogramming, also called transdifferentiation, allows for the reprogramming o...
Human embryonic stem cells (hESCs) are thought to have enormous potential for use in regenerative me...
Differentiating tissue stem cells can self-assemble into structures that strikingly resemble functio...
Tissue and whole organ regeneration is a dramatic biological response to injury that occurs across d...
Cells undergo reprogramming/de-differentiation through nuclear and cytoplasmic remodelling. Autophag...
Introduction: Bone marrow mesenchymal stem cells/multipotent stromal cells (MSCs) are recruited to s...
BACKGROUND AND METHODS: In this study, we utilized a combination of low oxygen tension and a novel a...
International audienceBackground In vitro cultivated stem cell populations are in general heterogene...
The development of in vitro models to screen the effect of different concentrations, combinations an...
The behavior of stem cells, when they work collectively, can be much more sophisticated than one mig...
Stimulating regeneration of complex tissue and organs after injury is one of curious topic that attr...
Abstract Background Dedifferentiation occurs naturally in mature cell types during epimorphic regene...
In contrast to mammals, lower vertebrates are capable of extraordinary myocardial regeneration thank...
We propose a method of expanding stem cells and dedifferentiating cells by cultruing cells with cell...
Cell replacement therapy holds a promising future in the treatment of degenerative diseases related ...
Abstract Direct cell reprogramming, also called transdifferentiation, allows for the reprogramming o...
Human embryonic stem cells (hESCs) are thought to have enormous potential for use in regenerative me...
Differentiating tissue stem cells can self-assemble into structures that strikingly resemble functio...