Adult neurogenesis in the murine dentate gyrus occurs in a specialized microenvironment that sustains the generation of neurons during life. To fully understand adult neurogenesis, it is essential to determine the neural stem cell (NSC) and progenitor developmental stages, their molecular determinants, and the niche cellular and molecular composition. We report on a single-cell RNA sequencing study of the hippocampal niche, performed by isolating all the non-neuronal cell populations. Our analysis provides a comprehensive description of the dentate gyrus cells, and it allows the identification of exclusive cell-type-specific markers. We define the developmental stages and transcriptional dynamics of NSCs and progenitors, and we find that, w...
The ability to assign expression patterns to the individual cell types that constitute a tissue is a...
The degree of neurogenesis in the adult hippocampal dentate gyrus (DG) is the center of the discussi...
The mature brain contains an incredible number and diversity of cells that are produced and maintain...
Adult neurogenesis in the murine dentate gyrus occurs in a specialized microenvironment that sustain...
Neural stem cells (NSCs) in the adult mammalian brain serve as a reservoir for the generation of new...
SummarySomatic stem cells contribute to tissue ontogenesis, homeostasis, and regeneration through se...
Adult neural stem cells (NSCs) build, maintain and are involved in repair of the mammalian brain. Ad...
Quiescence is essential for the long-term maintenance of adult stem cells and tissue homeostasis and...
Somatic stem cells contribute to tissue ontogenesis, homeostasis, and regeneration through sequentia...
Neural stem cells (NSCs) contribute to plasticity and repair of the adult brain. Niches harboring NS...
Adult neural stem cells (NSCs) derive from embryonic precursors, but little is known about how or wh...
The complexity of adult neurogenesis is becoming increasingly apparent as we learn more about cellul...
Stem cells have the extraordinary potential to produce many different cell types. The hippocampus is...
Neural stem cells (NSCs) contribute to plasticity and repair of the adult brain. Niches harboring NS...
The degree of neurogenesis in the adult hippocampal dentate gyrus (DG) is the center of the discussi...
The ability to assign expression patterns to the individual cell types that constitute a tissue is a...
The degree of neurogenesis in the adult hippocampal dentate gyrus (DG) is the center of the discussi...
The mature brain contains an incredible number and diversity of cells that are produced and maintain...
Adult neurogenesis in the murine dentate gyrus occurs in a specialized microenvironment that sustain...
Neural stem cells (NSCs) in the adult mammalian brain serve as a reservoir for the generation of new...
SummarySomatic stem cells contribute to tissue ontogenesis, homeostasis, and regeneration through se...
Adult neural stem cells (NSCs) build, maintain and are involved in repair of the mammalian brain. Ad...
Quiescence is essential for the long-term maintenance of adult stem cells and tissue homeostasis and...
Somatic stem cells contribute to tissue ontogenesis, homeostasis, and regeneration through sequentia...
Neural stem cells (NSCs) contribute to plasticity and repair of the adult brain. Niches harboring NS...
Adult neural stem cells (NSCs) derive from embryonic precursors, but little is known about how or wh...
The complexity of adult neurogenesis is becoming increasingly apparent as we learn more about cellul...
Stem cells have the extraordinary potential to produce many different cell types. The hippocampus is...
Neural stem cells (NSCs) contribute to plasticity and repair of the adult brain. Niches harboring NS...
The degree of neurogenesis in the adult hippocampal dentate gyrus (DG) is the center of the discussi...
The ability to assign expression patterns to the individual cell types that constitute a tissue is a...
The degree of neurogenesis in the adult hippocampal dentate gyrus (DG) is the center of the discussi...
The mature brain contains an incredible number and diversity of cells that are produced and maintain...