Abstract Background Inflammation is a key contributor to central nervous system (CNS) injury such as stroke, and is a major target for therapeutic intervention. Effective treatments for CNS injuries are limited and applicable to only a minority of patients. Stem cell-based therapies are increasingly considered for the treatment of CNS disease, because they can be used as in-situ regulators of inflammation, and improve tissue repair and recovery. One promising option is the use of bone marrow-derived mesenchymal stem cells (MSCs), which can secrete anti-inflammatory and trophic factors, can migrate towards inflamed and injured sites or can be implanted locally. Here we tested the hypothesis that pre-treatment with inflammatory cytokines can ...
Central nervous system (CNS) injury breakes the impermeability of the blood brain barrier, this allo...
Background Progression of neurodegenerative diseases occurs when microglia, upon persistent activat...
Microglia cells are the central nervous system immune cells and have been pointed out as the main me...
Abstract Background Inflammation is a key contributor to central nervous system (CNS) injury such as...
The therapeutic benefits associated with mesenchymal stem cells (MSCs) largely result from their imm...
Stress or injury in the central nervous system (CNS) activates the resident immune cell, microglia. ...
In acute traumatic or hypoxic brain and spinal cord lesions, as well as in chronic idiopathic neurod...
Abstract Background Mesenchymal stem cells (MSCs) are one of the most promising candidates for the t...
In acute traumatic or hypoxic brain and spinal cord lesions, as well as in chronic idiopathic neurod...
Neurodegenerative disorders share the final degenerative pathway, the inflammation-induced apoptosis...
<div><p>Many studies have shown that microglia in the activated state may be neurotoxic. It has been...
Neurodegenerative disorders share the final degenerative pathway, the inflammation-induced apoptosis...
Neurodegenerative disorders share the final degenerative pathway, the inflammation-induced apoptosis...
Neurodegenerative disorders share the final degenerative pathway, the inflammation-induced apoptosis...
It is becoming increasingly evident that inflammatory reactions of microglia contribute to the patho...
Central nervous system (CNS) injury breakes the impermeability of the blood brain barrier, this allo...
Background Progression of neurodegenerative diseases occurs when microglia, upon persistent activat...
Microglia cells are the central nervous system immune cells and have been pointed out as the main me...
Abstract Background Inflammation is a key contributor to central nervous system (CNS) injury such as...
The therapeutic benefits associated with mesenchymal stem cells (MSCs) largely result from their imm...
Stress or injury in the central nervous system (CNS) activates the resident immune cell, microglia. ...
In acute traumatic or hypoxic brain and spinal cord lesions, as well as in chronic idiopathic neurod...
Abstract Background Mesenchymal stem cells (MSCs) are one of the most promising candidates for the t...
In acute traumatic or hypoxic brain and spinal cord lesions, as well as in chronic idiopathic neurod...
Neurodegenerative disorders share the final degenerative pathway, the inflammation-induced apoptosis...
<div><p>Many studies have shown that microglia in the activated state may be neurotoxic. It has been...
Neurodegenerative disorders share the final degenerative pathway, the inflammation-induced apoptosis...
Neurodegenerative disorders share the final degenerative pathway, the inflammation-induced apoptosis...
Neurodegenerative disorders share the final degenerative pathway, the inflammation-induced apoptosis...
It is becoming increasingly evident that inflammatory reactions of microglia contribute to the patho...
Central nervous system (CNS) injury breakes the impermeability of the blood brain barrier, this allo...
Background Progression of neurodegenerative diseases occurs when microglia, upon persistent activat...
Microglia cells are the central nervous system immune cells and have been pointed out as the main me...