Relatively quiescent somatic stem cells support life-long cell renewal in most adult tissues. Neural stem cells in the adult mammalian brain are restricted to two specific neurogenic niches: the subgranular zone of the dentate gyrus in the hippocampus and the ventricular-subventricular zone (V-SVZ; also called subependymal zone or SEZ) in the walls of the lateral ventricles. The development of in vivo gene transfer strategies for adult stem cell populations (i.e. those of the mammalian brain) resulting in long-term expression of desired transgenes in the stem cells and their derived progeny is a crucial tool in current biomedical and biotechnological research. Here, a direct in vivo method is presented for the stable genetic modification of...
localized in vivo that it is difficult to separate them physi-cally. Instead, we anticipate that def...
The subventricular zone (SVZ) of the adult mammalian brain harbors the neural stem cell population w...
[[abstract]]Stem cells self-renew and generate various cell types in their respective lineages. They...
Relatively quiescent somatic stem cells support life-long cell renewal in most adult tissues. Neural...
Relatively quiescent somatic stem cells support life-long cell renewal in most adult tissues. Neural...
Stable genetic modification of adult stem cells is fundamental for both developmental studies and th...
Modulation of adult neurogenesis may offer new therapeutic strategies for various brain disorders. I...
Neurogenesis persists in selected regions of the adult mouse brain; among them, the ventricular-subv...
Neural stem cells (NSCs) reside in a unique microenvironment called the neurogenic niche and generat...
<div><p>Neural stem cells (NSCs) reside in a unique microenvironment called the neurogenic niche and...
Neural stem cells (NSCs) reside in a unique microenvironment called the neurogenic niche and generat...
During the development of the mammalian brain, neuronal precursors migrate to their final destinatio...
The ventricular-subventricular zone (V-SVZ) harbors adult neural stem cells. V-SVZ neural stem cells...
Neural stem cells (NSCs) have the remarkable capacity to self-renew and the lifelong ability to gene...
Strategies for promoting neural regeneration are hindered by the difficulty of manipulating desired ...
localized in vivo that it is difficult to separate them physi-cally. Instead, we anticipate that def...
The subventricular zone (SVZ) of the adult mammalian brain harbors the neural stem cell population w...
[[abstract]]Stem cells self-renew and generate various cell types in their respective lineages. They...
Relatively quiescent somatic stem cells support life-long cell renewal in most adult tissues. Neural...
Relatively quiescent somatic stem cells support life-long cell renewal in most adult tissues. Neural...
Stable genetic modification of adult stem cells is fundamental for both developmental studies and th...
Modulation of adult neurogenesis may offer new therapeutic strategies for various brain disorders. I...
Neurogenesis persists in selected regions of the adult mouse brain; among them, the ventricular-subv...
Neural stem cells (NSCs) reside in a unique microenvironment called the neurogenic niche and generat...
<div><p>Neural stem cells (NSCs) reside in a unique microenvironment called the neurogenic niche and...
Neural stem cells (NSCs) reside in a unique microenvironment called the neurogenic niche and generat...
During the development of the mammalian brain, neuronal precursors migrate to their final destinatio...
The ventricular-subventricular zone (V-SVZ) harbors adult neural stem cells. V-SVZ neural stem cells...
Neural stem cells (NSCs) have the remarkable capacity to self-renew and the lifelong ability to gene...
Strategies for promoting neural regeneration are hindered by the difficulty of manipulating desired ...
localized in vivo that it is difficult to separate them physi-cally. Instead, we anticipate that def...
The subventricular zone (SVZ) of the adult mammalian brain harbors the neural stem cell population w...
[[abstract]]Stem cells self-renew and generate various cell types in their respective lineages. They...