Wnt proteins have now been identified as major physiological regulators of multiple aspects of stem cell biology, from self-renewal and pluripotency to precursor cell competence and terminal differentiation. Neural stem cells are the cellular building blocks of the developing nervous system and provide the basis for continued neurogenesis in the adult mammalian central nervous system. Here, we outline the most recent advances in the field about the critical factors and regulatory networks involved in Wnt signaling and discuss recent findings on how this increasingly intricate pathway contributes to the shaping of the developing and adult nervous system on the level of the neural stem cell
Wnt signaling has recently emerged as a key factor in controlling stem cell expansion. In contrast, ...
Wnt signaling has recently emerged as a key factor in controlling stem cell expansion. In contrast, ...
Wnt proteins preferentially activate either β-catenin-dependent or β-catenin-independent signals, bu...
Wnt/beta-catenin signaling plays a crucial role throughout all stages of brain development and remai...
The Wnt signaling pathway plays a role in the development of the central nervous system (CNS) and gr...
The Wnt signaling pathway plays a role in the development of the central nervous system and growing ...
The canonical Wnt/β-catenin signalling pathway plays an important role in proliferation and differen...
Abstract.: Wnt signaling has proven to be essential for neural development at various stages and acr...
Members of the Wnt family of secreted signaling proteins influence many aspects of neural developmen...
Members of the Wnt family of secreted signaling proteins influence many aspects of neural developmen...
<div><p>Wnts were previously shown to regulate the neurogenesis of neural stem or progenitor cells. ...
Wnts were previously shown to regulate the neurogenesis of neural stem or progenitor cells. Here, we...
In mammals, many diseases of the central nervous system (CNS) are associated with substantial neuron...
Components of the Wnt signaling pathway are expressed in a tightly regulated and spatially specific ...
Wnt signaling has recently emerged as a key factor in controlling stem cell expansion. In contrast, ...
Wnt signaling has recently emerged as a key factor in controlling stem cell expansion. In contrast, ...
Wnt signaling has recently emerged as a key factor in controlling stem cell expansion. In contrast, ...
Wnt proteins preferentially activate either β-catenin-dependent or β-catenin-independent signals, bu...
Wnt/beta-catenin signaling plays a crucial role throughout all stages of brain development and remai...
The Wnt signaling pathway plays a role in the development of the central nervous system (CNS) and gr...
The Wnt signaling pathway plays a role in the development of the central nervous system and growing ...
The canonical Wnt/β-catenin signalling pathway plays an important role in proliferation and differen...
Abstract.: Wnt signaling has proven to be essential for neural development at various stages and acr...
Members of the Wnt family of secreted signaling proteins influence many aspects of neural developmen...
Members of the Wnt family of secreted signaling proteins influence many aspects of neural developmen...
<div><p>Wnts were previously shown to regulate the neurogenesis of neural stem or progenitor cells. ...
Wnts were previously shown to regulate the neurogenesis of neural stem or progenitor cells. Here, we...
In mammals, many diseases of the central nervous system (CNS) are associated with substantial neuron...
Components of the Wnt signaling pathway are expressed in a tightly regulated and spatially specific ...
Wnt signaling has recently emerged as a key factor in controlling stem cell expansion. In contrast, ...
Wnt signaling has recently emerged as a key factor in controlling stem cell expansion. In contrast, ...
Wnt signaling has recently emerged as a key factor in controlling stem cell expansion. In contrast, ...
Wnt proteins preferentially activate either β-catenin-dependent or β-catenin-independent signals, bu...