Neural progenitor cells have been proposed as a therapy for central nervous system disorders, including neurodegenerative diseases and trauma injuries, however their accessibility is a major limitation. We recently isolated Tuj1+ cells from skeletal muscle culture of Nestin-GFP transgenic mice however whether they form functional neurons in the brain is not yet known. Additionally, their isolation from nontransgenic species and identification of their ancestors is unknown. This gap of knowledge precludes us from studying their role as a valuable alternative to neural progenitors. Here, we identified two pericyte subtypes, type-1 and type-2, using a double transgenic Nestin-GFP/NG2-DsRed mouse and demonstrated that Nestin-GFP+/Tuj1+ cells de...
Cells derived from blood vessels of human skeletal muscle can regenerate skeletal muscle, similarly ...
Abstract Background Skeletal muscle comprises almost 40% of the human body and is essential for move...
Researchers have attempted to use gene- and cell-based therapies to restore dystrophin and alleviate...
AbstractNeural progenitor cells have been proposed as a therapy for central nervous system disorders...
AbstractNeural progenitor cells have been proposed as a therapy for central nervous system disorders...
Therapy for neural lesions or degenerative diseases relies mainly on finding transplantable active p...
Stem cells ensure tissue regeneration, while overgrowth of adipogenic cells may compromise organ rec...
Background: Therapy for neural lesions or degenerative diseases relies mainly on finding transplanta...
Extended bed rest or single limb immobilization can significantly reduce skeletal muscle mass and fu...
Cells derived from blood vessels of human skeletal muscle can regenerate skeletal muscle, similarly ...
Cells derived from blood vessels of human skeletal muscle can regenerate skeletal muscle, similarly ...
Cells derived from blood vessels of human skeletal muscle can regenerate skeletal muscle, similarly ...
Cells derived from blood vessels of human skeletal muscle can regenerate skeletal muscle, similarly ...
Cells derived from blood vessels of human skeletal muscle can regenerate skeletal muscle, similarly ...
Cells derived from blood vessels of human skeletal muscle can regenerate skeletal muscle, similarly ...
Cells derived from blood vessels of human skeletal muscle can regenerate skeletal muscle, similarly ...
Abstract Background Skeletal muscle comprises almost 40% of the human body and is essential for move...
Researchers have attempted to use gene- and cell-based therapies to restore dystrophin and alleviate...
AbstractNeural progenitor cells have been proposed as a therapy for central nervous system disorders...
AbstractNeural progenitor cells have been proposed as a therapy for central nervous system disorders...
Therapy for neural lesions or degenerative diseases relies mainly on finding transplantable active p...
Stem cells ensure tissue regeneration, while overgrowth of adipogenic cells may compromise organ rec...
Background: Therapy for neural lesions or degenerative diseases relies mainly on finding transplanta...
Extended bed rest or single limb immobilization can significantly reduce skeletal muscle mass and fu...
Cells derived from blood vessels of human skeletal muscle can regenerate skeletal muscle, similarly ...
Cells derived from blood vessels of human skeletal muscle can regenerate skeletal muscle, similarly ...
Cells derived from blood vessels of human skeletal muscle can regenerate skeletal muscle, similarly ...
Cells derived from blood vessels of human skeletal muscle can regenerate skeletal muscle, similarly ...
Cells derived from blood vessels of human skeletal muscle can regenerate skeletal muscle, similarly ...
Cells derived from blood vessels of human skeletal muscle can regenerate skeletal muscle, similarly ...
Cells derived from blood vessels of human skeletal muscle can regenerate skeletal muscle, similarly ...
Abstract Background Skeletal muscle comprises almost 40% of the human body and is essential for move...
Researchers have attempted to use gene- and cell-based therapies to restore dystrophin and alleviate...