Successful neurogenesis requires adequate proliferation of neural stem cells (NSCs) and their progeny, followed by neuronal differentiation, maturation and survival. NSCs inhabit a complex cellular microenvironment, the niche, which influences their behaviour. To ensure sustained neurogenesis, niche cells must respond to extrinsic, environmental changes whilst fulfilling the intrinsic requirements of the neurogenic program and adapting their roles accordingly. However, very little is known about how different niche cells adjust their properties to such inputs. Here, we show that nutritional and NSC-derived signals induce the remodelling of Drosophila cortex glia, adapting this glial niche to the evolving needs of NSCs. First, nutrition-indu...
Understanding stem cell behaviour and the mechanisms that govern stem cell proliferation is a key qu...
Resumen del póster presentado al European Developmental Biology Congress (EDBC), celebrado en Alican...
Stem cells control their mitotic activity to decide whether to proliferate or to stay in quiescence....
International audienceSuccessful neurogenesis requires adequate proliferation of neural stem cells (...
Neural stem cells (NSCs) reside in a defined cellular microenvironment, the niche, which supports th...
Neural stem cells (NSCs) reside in a defined cellular microenvironment, the niche, which supports th...
Neural stem cells (NSCs) reside in a defined cellular microenvironment, the niche, which supports th...
Neural stem cells (NSCs) reside in a defined cellular microenvironment, the niche, which supports th...
Dietary nutrients provide macromolecules necessary for organism growth and development. In response ...
Dietary nutrients provide macromolecules necessary for organism growth and development. In response ...
In order to coordinate brain development with the growth of the organism, neurogenesis is highly dep...
Adequate neuronal development is essential for communication between organs and, consequently, for t...
Neural stem cells (NSCs) are multipotent, self-renewing progenitors that generate progeny that diffe...
During development, neural stem cells (NSCs) generate the neurons and glia of the central nervous sy...
International audienceSystemic signals provided by nutrients and hormones are known to coordinate th...
Understanding stem cell behaviour and the mechanisms that govern stem cell proliferation is a key qu...
Resumen del póster presentado al European Developmental Biology Congress (EDBC), celebrado en Alican...
Stem cells control their mitotic activity to decide whether to proliferate or to stay in quiescence....
International audienceSuccessful neurogenesis requires adequate proliferation of neural stem cells (...
Neural stem cells (NSCs) reside in a defined cellular microenvironment, the niche, which supports th...
Neural stem cells (NSCs) reside in a defined cellular microenvironment, the niche, which supports th...
Neural stem cells (NSCs) reside in a defined cellular microenvironment, the niche, which supports th...
Neural stem cells (NSCs) reside in a defined cellular microenvironment, the niche, which supports th...
Dietary nutrients provide macromolecules necessary for organism growth and development. In response ...
Dietary nutrients provide macromolecules necessary for organism growth and development. In response ...
In order to coordinate brain development with the growth of the organism, neurogenesis is highly dep...
Adequate neuronal development is essential for communication between organs and, consequently, for t...
Neural stem cells (NSCs) are multipotent, self-renewing progenitors that generate progeny that diffe...
During development, neural stem cells (NSCs) generate the neurons and glia of the central nervous sy...
International audienceSystemic signals provided by nutrients and hormones are known to coordinate th...
Understanding stem cell behaviour and the mechanisms that govern stem cell proliferation is a key qu...
Resumen del póster presentado al European Developmental Biology Congress (EDBC), celebrado en Alican...
Stem cells control their mitotic activity to decide whether to proliferate or to stay in quiescence....