AbstractDuring vertebrate development, neural crest cells are exposed to multiple extracellular cues that drive their differentiation into neural and non-neural cell lineages. Insights into the signals potentially involved in neural crest cell fate decisions in vivo have been gained by cell culture experiments that have allowed the identification of instructive growth factors promoting either proliferation of multipotent neural crest cells or acquisition of specific fates. For instance, members of the TGFβ factor family induce neurogenesis and smooth muscle cell formation at the expense of other fates in culture. In vivo, conditional ablation of various TGFβ signaling components resulted in malformations of non-neural derivatives of the neu...
AbstractElucidating the mechanisms by which multipotent cells differentiate into distinct lineages i...
AbstractTGF-beta (TGFβ) family mediated Smad signaling is involved in mesoderm and endoderm specific...
A central problem in developmental neurobiology is understanding the cellular and molecular mechani...
During vertebrate development, neural crest cells are exposed to multiple extracellular cues that dr...
AbstractSmad4 is the central mediator for TGF-β/BMP signals, which are involved in regulating crania...
AbstractHow growth factors influence the fate of multipotent progenitor cells is not well understood...
AbstractThe question of how appropriate cell types are generated in correct numbers during developme...
Vertebrate neural crest cells are multipotent and differentiate into structures that include cartil...
Indiana University-Purdue University Indianapolis (IUPUI)Neural crest cells (NCC) are a multipotent ...
During central nervous system (CNS) development, proliferation and differentiation of neural stem ce...
This revised vision for neural crest cell differentiation is consistent with what has been proposed ...
Neural crest cells are embryonic progenitors that generate numerous cell types in vertebrates. With ...
AbstractIn the vertebrate embryo, the neural crest forms transiently in the dorsal neural primordium...
Because of its unique ability to generate a wide variety of both neural and nonneural derivatives, t...
AbstractBefore the nervous system establishes its complex array of cell types and connections, multi...
AbstractElucidating the mechanisms by which multipotent cells differentiate into distinct lineages i...
AbstractTGF-beta (TGFβ) family mediated Smad signaling is involved in mesoderm and endoderm specific...
A central problem in developmental neurobiology is understanding the cellular and molecular mechani...
During vertebrate development, neural crest cells are exposed to multiple extracellular cues that dr...
AbstractSmad4 is the central mediator for TGF-β/BMP signals, which are involved in regulating crania...
AbstractHow growth factors influence the fate of multipotent progenitor cells is not well understood...
AbstractThe question of how appropriate cell types are generated in correct numbers during developme...
Vertebrate neural crest cells are multipotent and differentiate into structures that include cartil...
Indiana University-Purdue University Indianapolis (IUPUI)Neural crest cells (NCC) are a multipotent ...
During central nervous system (CNS) development, proliferation and differentiation of neural stem ce...
This revised vision for neural crest cell differentiation is consistent with what has been proposed ...
Neural crest cells are embryonic progenitors that generate numerous cell types in vertebrates. With ...
AbstractIn the vertebrate embryo, the neural crest forms transiently in the dorsal neural primordium...
Because of its unique ability to generate a wide variety of both neural and nonneural derivatives, t...
AbstractBefore the nervous system establishes its complex array of cell types and connections, multi...
AbstractElucidating the mechanisms by which multipotent cells differentiate into distinct lineages i...
AbstractTGF-beta (TGFβ) family mediated Smad signaling is involved in mesoderm and endoderm specific...
A central problem in developmental neurobiology is understanding the cellular and molecular mechani...