In a recent paper in Nature, Vierbuchen et al. (2010) show that fibroblasts can be directly converted into functional neurons by defined factors. This finding sheds new light on the biology underlying cell-fate restrictions and might offer a new avenue for studying neurological diseases
Since MyoD was used to convert fibroblasts directly to skeletal muscle, biologists have tried to app...
Background - Growth factors play an essential role in organogenesis. We examine the potential of gro...
The Duchenne and Becker muscular dystrophies are caused by mutation of dystrophin gene and primarily...
Identifying pathways for cardiac muscle creation is a paramount objective of cardiac stem cell biolo...
SummaryThe reprogramming of fibroblasts to induced pluripotent stem cells (iPSCs) raises the possibi...
SummaryDirect reprogramming of adult somatic cells into alternative cell types has been shown for se...
Recent advances in stem cell biology have established the feasibility of reprogramming human and mur...
Neural precursor cells (NPCs) reside in the subventricular zone in association with blood vessels an...
AbstractHeated debate has surrounded the issue of whether adult stem cells can differentiate into ca...
Cardiac fibroblasts (CFs) play critical roles in heart development, homeostasis, and disease. The li...
Growing evidence shows that stem cells are modulated by systemic factors that are integrated with lo...
Regulation of hematopoietic stem cell (HSC) dormancy by specific cell types in the hematopoietic nic...
SummaryCell therapy can improve cardiac function in animals and humans after injury, but the mechani...
The adult heart, albeit the presence of multiple progenitor cell types, is one of the poorly regener...
Fibrosis resulting from cardiac injury presents a major challenge to restoring heart function after ...
Since MyoD was used to convert fibroblasts directly to skeletal muscle, biologists have tried to app...
Background - Growth factors play an essential role in organogenesis. We examine the potential of gro...
The Duchenne and Becker muscular dystrophies are caused by mutation of dystrophin gene and primarily...
Identifying pathways for cardiac muscle creation is a paramount objective of cardiac stem cell biolo...
SummaryThe reprogramming of fibroblasts to induced pluripotent stem cells (iPSCs) raises the possibi...
SummaryDirect reprogramming of adult somatic cells into alternative cell types has been shown for se...
Recent advances in stem cell biology have established the feasibility of reprogramming human and mur...
Neural precursor cells (NPCs) reside in the subventricular zone in association with blood vessels an...
AbstractHeated debate has surrounded the issue of whether adult stem cells can differentiate into ca...
Cardiac fibroblasts (CFs) play critical roles in heart development, homeostasis, and disease. The li...
Growing evidence shows that stem cells are modulated by systemic factors that are integrated with lo...
Regulation of hematopoietic stem cell (HSC) dormancy by specific cell types in the hematopoietic nic...
SummaryCell therapy can improve cardiac function in animals and humans after injury, but the mechani...
The adult heart, albeit the presence of multiple progenitor cell types, is one of the poorly regener...
Fibrosis resulting from cardiac injury presents a major challenge to restoring heart function after ...
Since MyoD was used to convert fibroblasts directly to skeletal muscle, biologists have tried to app...
Background - Growth factors play an essential role in organogenesis. We examine the potential of gro...
The Duchenne and Becker muscular dystrophies are caused by mutation of dystrophin gene and primarily...