Understanding the molecular mechanisms underlying activation of quiescent neural stem cells (NSCs) is complicated by heterogeneity in coexisting NSC pools. Two papers in this issue of Cell Stem Cell (Llorens-Bobadilla et al., 2015; Shin et al., 2015) report sequencing of single NSCs, providing insights into the transition from quiescence to activation and highlighting common themes in NSCs from distinct brain regions
Neural stem cells (NSCs) reside in specialized niches in the adult mammalian brain. The ventricular-...
Although neurogenesis continues throughout life in the mammalian brain, the issue of whether the ste...
The adult mammalian forebrain contains neural stem/progenitor cells (NSCs) that generate neurons thr...
Understanding the molecular mechanisms underlying activation of quiescent neural stem cells (NSCs) i...
SummaryHeterogeneous pools of adult neural stem cells (NSCs) contribute to brain maintenance and reg...
SummarySomatic stem cells contribute to tissue ontogenesis, homeostasis, and regeneration through se...
Neurogenic niches in the adult mammalian brain are composed of heterogeneous populations of neural s...
International audienceThe ‘identity’ of the neural stem cell (NSC) in the adult mammalian brain has ...
Neural stem cells (NSCs) contribute to plasticity and repair of the adult brain. Niches harboring NS...
Neural stem cells (NSCs) in the adult mammalian brain serve as a reservoir for the generation of new...
Regulation of quiescence and cell cycle entry is pivotal for the maintenance of stem cell population...
Summary: Deciphering the mechanisms that regulate the quiescence of adult neural stem cells (NSCs) i...
Quiescence is essential for long-term maintenance of adult stem cells and tissue homeostasis. The ad...
SummaryAdult neurogenic niches harbor quiescent neural stem cells; however, their in vivo identity h...
Neural stem cells (NSCs) are crucial for development, regeneration, and repair of the nervous system...
Neural stem cells (NSCs) reside in specialized niches in the adult mammalian brain. The ventricular-...
Although neurogenesis continues throughout life in the mammalian brain, the issue of whether the ste...
The adult mammalian forebrain contains neural stem/progenitor cells (NSCs) that generate neurons thr...
Understanding the molecular mechanisms underlying activation of quiescent neural stem cells (NSCs) i...
SummaryHeterogeneous pools of adult neural stem cells (NSCs) contribute to brain maintenance and reg...
SummarySomatic stem cells contribute to tissue ontogenesis, homeostasis, and regeneration through se...
Neurogenic niches in the adult mammalian brain are composed of heterogeneous populations of neural s...
International audienceThe ‘identity’ of the neural stem cell (NSC) in the adult mammalian brain has ...
Neural stem cells (NSCs) contribute to plasticity and repair of the adult brain. Niches harboring NS...
Neural stem cells (NSCs) in the adult mammalian brain serve as a reservoir for the generation of new...
Regulation of quiescence and cell cycle entry is pivotal for the maintenance of stem cell population...
Summary: Deciphering the mechanisms that regulate the quiescence of adult neural stem cells (NSCs) i...
Quiescence is essential for long-term maintenance of adult stem cells and tissue homeostasis. The ad...
SummaryAdult neurogenic niches harbor quiescent neural stem cells; however, their in vivo identity h...
Neural stem cells (NSCs) are crucial for development, regeneration, and repair of the nervous system...
Neural stem cells (NSCs) reside in specialized niches in the adult mammalian brain. The ventricular-...
Although neurogenesis continues throughout life in the mammalian brain, the issue of whether the ste...
The adult mammalian forebrain contains neural stem/progenitor cells (NSCs) that generate neurons thr...