International audienceBecause stem cells are often found to improve repair tissue including heart without evidence of engraftment or differentiation, mechanisms underlying wound healing are still elusive. Several studies have reported that stem cells can fuse with cardiomyocytes either by permanent or partial cell fusion processes. However, the respective physiological impact of these two processes remains unknown in part because of the lack of knowledge of the resulting hybrid cells. To further characterize cell fusion, we cocultured mouse fully differentiated cardiomyocytes with human multipotent adipose-derived stem (hMADS) cells as a model of adult stem cells. We found that heterologous cell fusion promoted cardiomyocyte reprogramming b...
The adult human heart has a minimal ability to regenerate myocardium. Therefore, loss of viable card...
Direct reprogramming of adult somatic cells into alternative cell types has been shown for several l...
Background: Direct cardiac reprogramming is currently being investigated for the generation of cells...
International audienceBecause stem cells are often found to improve repair tissue including heart wi...
Regenerative cell therapy offers potential applications in many diseases involving cell loss. Howeve...
Abstract—Cardiomyoplasty with skeletal myoblasts may benefit cardiac function after infarction. Rece...
AbstractCardiomyocytes (CMs) and mesenchymal stem cells (MSCs) are important cell types for cardiac ...
Cardiovascular disease (CVD) is the leading causes of morbidity and death globally. In particular, a...
Cell-based therapies hold promise of repairing an injured heart, and the description of stem and pro...
The mammalian heart has little capacity to regenerate, and following injury the myocardium is replac...
The reprogramming of adult cells into pluripotent cells or directly into alternative adult cell type...
SummaryDirect reprogramming of adult somatic cells into alternative cell types has been shown for se...
Aims: Cardiovascular diseases caused by loss of functional cardiomyocytes (CMs) are a major cause of...
SummaryThe reprogramming of fibroblasts to induced pluripotent stem cells (iPSCs) raises the possibi...
The mammalian heart has little capacity to regenerate, and following injury the myocardium is replac...
The adult human heart has a minimal ability to regenerate myocardium. Therefore, loss of viable card...
Direct reprogramming of adult somatic cells into alternative cell types has been shown for several l...
Background: Direct cardiac reprogramming is currently being investigated for the generation of cells...
International audienceBecause stem cells are often found to improve repair tissue including heart wi...
Regenerative cell therapy offers potential applications in many diseases involving cell loss. Howeve...
Abstract—Cardiomyoplasty with skeletal myoblasts may benefit cardiac function after infarction. Rece...
AbstractCardiomyocytes (CMs) and mesenchymal stem cells (MSCs) are important cell types for cardiac ...
Cardiovascular disease (CVD) is the leading causes of morbidity and death globally. In particular, a...
Cell-based therapies hold promise of repairing an injured heart, and the description of stem and pro...
The mammalian heart has little capacity to regenerate, and following injury the myocardium is replac...
The reprogramming of adult cells into pluripotent cells or directly into alternative adult cell type...
SummaryDirect reprogramming of adult somatic cells into alternative cell types has been shown for se...
Aims: Cardiovascular diseases caused by loss of functional cardiomyocytes (CMs) are a major cause of...
SummaryThe reprogramming of fibroblasts to induced pluripotent stem cells (iPSCs) raises the possibi...
The mammalian heart has little capacity to regenerate, and following injury the myocardium is replac...
The adult human heart has a minimal ability to regenerate myocardium. Therefore, loss of viable card...
Direct reprogramming of adult somatic cells into alternative cell types has been shown for several l...
Background: Direct cardiac reprogramming is currently being investigated for the generation of cells...