There is intense interest and effort toward regenerating the brain after severe injury. Stem cell transplantation after insult to the central nervous system has been regarded as the most promising approach for repair; however, engrafting cells alone might not be sufficient for effective regeneration. In this study, we have compared neural progenitors (NPs) from the fetal ventricular zone (VZ), the postnatal subventricular zone, and an immortalized radial glia (RG) cell line engineered to conditionally secrete the trophic factor insulin-like growth factor 1 (IGF-1). Upon differentiation in vitro , the VZ cells were able to generate a greater number of neurons than subventricular zone cells. Furthermore, differentiated VZ cells generated pyra...
International audienceAbstractBackgroundThe adult brain is unable to regenerate itself sufficiently ...
Cognizant Communication Corporation is the publisher and copyright holder of this article.The aim of...
With the limited capacity for self-repair in the adult CNS, efforts to stimulate quiescent stem cell...
Neural stem and progenitor cells (NSPC) can differentiate to neurons and glial cells. NSPC are easil...
Recent studies have shown that new neurons are continuously generated by endogenous neural stem cell...
Supplemental Material for Subacute Transplantation of Native and Genetically Engineered Neural Proge...
OBJECT: Immortalized neural progenitor cells derived from embryonic rat hippocampus (HiB5), were tra...
Neural stem/progenitor cells (NSPCs) in subventricular zone (SVZ) produce new striatal neurons durin...
Background and Purpose—Hypoxic–ischemic (HI) brain injury in newborn infants represents a major caus...
Traumatic brain injury (TBI) is the leading cause of death and disability in young adults in the ind...
The postnatal mammalian cortex has a very limited capacity for neuronal replacement after brain inju...
Stem cells are under intense investigation as potential therapeutics for central nervous system (CNS...
We developed a novel protocol for generation and selective amplification of neural progenitor cells ...
Understanding the physiology of human neural stem cells (hNSCs) in the context of cell therapy for n...
Neuronal loss is a common substrate of many neurological diseases that still lack effective treatmen...
International audienceAbstractBackgroundThe adult brain is unable to regenerate itself sufficiently ...
Cognizant Communication Corporation is the publisher and copyright holder of this article.The aim of...
With the limited capacity for self-repair in the adult CNS, efforts to stimulate quiescent stem cell...
Neural stem and progenitor cells (NSPC) can differentiate to neurons and glial cells. NSPC are easil...
Recent studies have shown that new neurons are continuously generated by endogenous neural stem cell...
Supplemental Material for Subacute Transplantation of Native and Genetically Engineered Neural Proge...
OBJECT: Immortalized neural progenitor cells derived from embryonic rat hippocampus (HiB5), were tra...
Neural stem/progenitor cells (NSPCs) in subventricular zone (SVZ) produce new striatal neurons durin...
Background and Purpose—Hypoxic–ischemic (HI) brain injury in newborn infants represents a major caus...
Traumatic brain injury (TBI) is the leading cause of death and disability in young adults in the ind...
The postnatal mammalian cortex has a very limited capacity for neuronal replacement after brain inju...
Stem cells are under intense investigation as potential therapeutics for central nervous system (CNS...
We developed a novel protocol for generation and selective amplification of neural progenitor cells ...
Understanding the physiology of human neural stem cells (hNSCs) in the context of cell therapy for n...
Neuronal loss is a common substrate of many neurological diseases that still lack effective treatmen...
International audienceAbstractBackgroundThe adult brain is unable to regenerate itself sufficiently ...
Cognizant Communication Corporation is the publisher and copyright holder of this article.The aim of...
With the limited capacity for self-repair in the adult CNS, efforts to stimulate quiescent stem cell...