SummaryHeterogeneous pools of adult neural stem cells (NSCs) contribute to brain maintenance and regeneration after injury. The balance of NSC activation and quiescence, as well as the induction of lineage-specific transcription factors, may contribute to diversity of neuronal and glial fates. To identify molecular hallmarks governing these characteristics, we performed single-cell sequencing of an unbiased pool of adult subventricular zone NSCs. This analysis identified a discrete, dormant NSC subpopulation that already expresses distinct combinations of lineage-specific transcription factors during homeostasis. Dormant NSCs enter a primed-quiescent state before activation, which is accompanied by downregulation of glycolytic metabolism, N...
The adult mammalian forebrain contains neural stem/progenitor cells (NSCs) that generate neurons thr...
Adult neurogenesis in the murine dentate gyrus occurs in a specialized microenvironment that sustain...
Neural stem cells (NSCs) reside in widespread regions along the lateral ventricle and generate diver...
SummaryHeterogeneous pools of adult neural stem cells (NSCs) contribute to brain maintenance and reg...
Understanding the molecular mechanisms underlying activation of quiescent neural stem cells (NSCs) i...
SummaryThe scarcity of tissue-specific stem cells and the complexity of their surrounding environmen...
Neural stem cells (NSCs) contribute to plasticity and repair of the adult brain. Niches harboring NS...
SummarySomatic stem cells contribute to tissue ontogenesis, homeostasis, and regeneration through se...
Neural stem cells (NSCs) in the adult mammalian brain serve as a reservoir for the generation of new...
International audienceThe ‘identity’ of the neural stem cell (NSC) in the adult mammalian brain has ...
Somatic stem cells contribute to tissue ontogenesis, homeostasis, and regeneration through sequentia...
SummaryAdult neurogenic niches harbor quiescent neural stem cells; however, their in vivo identity h...
Neural stem cells (NSCs) contribute to plasticity and repair of the adult brain. Niches harboring NS...
Summary: Deciphering the mechanisms that regulate the quiescence of adult neural stem cells (NSCs) i...
Adult neural stem cells (NSCs) build, maintain and are involved in repair of the mammalian brain. Ad...
The adult mammalian forebrain contains neural stem/progenitor cells (NSCs) that generate neurons thr...
Adult neurogenesis in the murine dentate gyrus occurs in a specialized microenvironment that sustain...
Neural stem cells (NSCs) reside in widespread regions along the lateral ventricle and generate diver...
SummaryHeterogeneous pools of adult neural stem cells (NSCs) contribute to brain maintenance and reg...
Understanding the molecular mechanisms underlying activation of quiescent neural stem cells (NSCs) i...
SummaryThe scarcity of tissue-specific stem cells and the complexity of their surrounding environmen...
Neural stem cells (NSCs) contribute to plasticity and repair of the adult brain. Niches harboring NS...
SummarySomatic stem cells contribute to tissue ontogenesis, homeostasis, and regeneration through se...
Neural stem cells (NSCs) in the adult mammalian brain serve as a reservoir for the generation of new...
International audienceThe ‘identity’ of the neural stem cell (NSC) in the adult mammalian brain has ...
Somatic stem cells contribute to tissue ontogenesis, homeostasis, and regeneration through sequentia...
SummaryAdult neurogenic niches harbor quiescent neural stem cells; however, their in vivo identity h...
Neural stem cells (NSCs) contribute to plasticity and repair of the adult brain. Niches harboring NS...
Summary: Deciphering the mechanisms that regulate the quiescence of adult neural stem cells (NSCs) i...
Adult neural stem cells (NSCs) build, maintain and are involved in repair of the mammalian brain. Ad...
The adult mammalian forebrain contains neural stem/progenitor cells (NSCs) that generate neurons thr...
Adult neurogenesis in the murine dentate gyrus occurs in a specialized microenvironment that sustain...
Neural stem cells (NSCs) reside in widespread regions along the lateral ventricle and generate diver...