Abstract Neural stem cells are undifferentiated precursor cells that proliferate, self-renew, and give rise to neuronal and glial lineages. Understanding the molecular mechanisms underlying their self-renewal is an important aspect in neural stem cell biology. The regulation mechanisms governing self-renewal of neural stem cells and the signaling pathways responsible for the proliferation and maintenance of adult stem cells remain largely unknown. In this issue of Molecular Brain [Ma DK et al. Molecular genetic analysis of FGFR1 signaling reveals distinct roles of MAPK and PLCγ1 activation for self-renewal of adult neural stem cells. Molecular Brain 2009, 2:16], characterized the different roles of MAPK and PLCγ1 in FGFR1 signaling in the s...
Neural stem cell self-renewal and differentiation are tightly regulated events during CNS developmen...
Stem cells play important roles in the development and maintenance of many tissues in mammals. Neura...
[[abstract]]Fibroblast growth factor 1 (FGF1) and FGF2 have been shown to maintain the proliferation...
Abstract Background Neural stem cells (NSCs) are present in the adult mammalian brain and sustain li...
Adult neurogenesis is the process by which the brain continuously generates and adds new neurons int...
The identification of self-renewing and multipotent neural stem cells (NSCs) in the mammalian brain ...
[[abstract]]Aurora-A kinase (AurA) is a centrosome and mitotic spindle- associated, cell cycle-regul...
Ephs and FGFRs belong to a superfamily of receptor tyrosine kinases, playing important roles in stem...
Summary: Deciphering the mechanisms that regulate the quiescence of adult neural stem cells (NSCs) i...
Specialized cellular microenvironments, or “niches, ” modulate stem cell properties, including cell ...
The adult mammalian brain contains self-renewable, multipotent neural stem cells (NSCs) that are res...
Neural stem cells are the precursors of neurons, astrocytes and oligodendrocytes. During neural deve...
Neural stem cells are defined by their ability to self-renew and undergo multilineage differentiatio...
[[abstract]]Background: Neural induction is a complex process and the detailed mechanism of FGF-indu...
The ex vivo expansion of stem cells is making major contribution to biomedical research. The multipo...
Neural stem cell self-renewal and differentiation are tightly regulated events during CNS developmen...
Stem cells play important roles in the development and maintenance of many tissues in mammals. Neura...
[[abstract]]Fibroblast growth factor 1 (FGF1) and FGF2 have been shown to maintain the proliferation...
Abstract Background Neural stem cells (NSCs) are present in the adult mammalian brain and sustain li...
Adult neurogenesis is the process by which the brain continuously generates and adds new neurons int...
The identification of self-renewing and multipotent neural stem cells (NSCs) in the mammalian brain ...
[[abstract]]Aurora-A kinase (AurA) is a centrosome and mitotic spindle- associated, cell cycle-regul...
Ephs and FGFRs belong to a superfamily of receptor tyrosine kinases, playing important roles in stem...
Summary: Deciphering the mechanisms that regulate the quiescence of adult neural stem cells (NSCs) i...
Specialized cellular microenvironments, or “niches, ” modulate stem cell properties, including cell ...
The adult mammalian brain contains self-renewable, multipotent neural stem cells (NSCs) that are res...
Neural stem cells are the precursors of neurons, astrocytes and oligodendrocytes. During neural deve...
Neural stem cells are defined by their ability to self-renew and undergo multilineage differentiatio...
[[abstract]]Background: Neural induction is a complex process and the detailed mechanism of FGF-indu...
The ex vivo expansion of stem cells is making major contribution to biomedical research. The multipo...
Neural stem cell self-renewal and differentiation are tightly regulated events during CNS developmen...
Stem cells play important roles in the development and maintenance of many tissues in mammals. Neura...
[[abstract]]Fibroblast growth factor 1 (FGF1) and FGF2 have been shown to maintain the proliferation...