Adult bone marrow mesenchymal stem cells are multipotent cells that can differentiate into a variety of mesodermal tissues. Recent studies have reported on their ability to also evolve into non-mesodermal cells, especially neural cells. While most of these studies revealed that manipulating these cells triggers the expression of typical neurone markers, less is known about the induction of neuronal- or glial-related physiological properties. The present study focused on the characterisation of glutamate transporters expression and activity in rat mesenchymal stem cells grown in culture conditions favouring their differentiation into astroglial cells. Ten days exposure of the cells to the culture supplement G5 was found to increase the expre...
Hypoxic ischemic injury to the fetal and neonatal brain is a leading cause of death and disability w...
Bone marrow mesenchymal stem cells (MSC) are multipotent cells. To explain their plasticity, we post...
In the present study, we investigated whether cultured astrocytes derived from adult neural precurso...
The possibility to isolate stem cells from the adult central nervous system and to maintain and prop...
The GLT-1 and GLAST astroglial transporters are the glutamate transporters mainly involved in mainta...
Specific metabolic features, such as glutamate reuptake, have been associated with normal functions ...
AbstractThe majority of glutamate released during neurotransmission is uptaken into astrocytes throu...
Specific metabolic features, such as glutamate reuptake, have been associated with normal functions ...
Specific metabolic features, such as glutamate reuptake, have been associated with normal functions ...
Protection of neurons by stem cells is an attractive challenge in the development of efficient thera...
Abstract While the astrocytic control of extracellular glutamate concentration at synaptic contacts ...
To study the functional role of activated astrocytes in glutamate homeostasis in vivo, we used a mod...
Classically, bone marrow mesenchymal stem cells (MSC) differentiate in vivo or in vitro into osteocy...
peer reviewedClassically, bone marrow mesenchymal stem cells (MSC) differentiate in vivo or in vitro...
To study the functional role of activated astrocytes in glutamate homeostasis in vivo, we used a mod...
Hypoxic ischemic injury to the fetal and neonatal brain is a leading cause of death and disability w...
Bone marrow mesenchymal stem cells (MSC) are multipotent cells. To explain their plasticity, we post...
In the present study, we investigated whether cultured astrocytes derived from adult neural precurso...
The possibility to isolate stem cells from the adult central nervous system and to maintain and prop...
The GLT-1 and GLAST astroglial transporters are the glutamate transporters mainly involved in mainta...
Specific metabolic features, such as glutamate reuptake, have been associated with normal functions ...
AbstractThe majority of glutamate released during neurotransmission is uptaken into astrocytes throu...
Specific metabolic features, such as glutamate reuptake, have been associated with normal functions ...
Specific metabolic features, such as glutamate reuptake, have been associated with normal functions ...
Protection of neurons by stem cells is an attractive challenge in the development of efficient thera...
Abstract While the astrocytic control of extracellular glutamate concentration at synaptic contacts ...
To study the functional role of activated astrocytes in glutamate homeostasis in vivo, we used a mod...
Classically, bone marrow mesenchymal stem cells (MSC) differentiate in vivo or in vitro into osteocy...
peer reviewedClassically, bone marrow mesenchymal stem cells (MSC) differentiate in vivo or in vitro...
To study the functional role of activated astrocytes in glutamate homeostasis in vivo, we used a mod...
Hypoxic ischemic injury to the fetal and neonatal brain is a leading cause of death and disability w...
Bone marrow mesenchymal stem cells (MSC) are multipotent cells. To explain their plasticity, we post...
In the present study, we investigated whether cultured astrocytes derived from adult neural precurso...