AbstractThe stereotyped positions occupied by individual classes of neurons are a fundamental characteristic of CNS cytoarchitecture. To study the regulation of neuronal positioning, we injected genetically labeled neural precursors derived from dorsal and ventral mouse forebrain into the telencephalic vesicles of embryonic rats. Cells from both areas were found to participate in the generation of telencephalic, diencephalic, and mesencephalic brain regions. Donorderived neurons populated the host brain in distinct patterns and acquired phenotypic features appropriate for their final location. These observations indicate that neuronal migration and differentiation are predominantly regulated by non-cell-autonomous signals. Exploiting this p...
We have recently characterized a stem cell population isolated from the rodent amniotic membrane ter...
AbstractNeural Precursor Cells (NPCs) generate complex stereotypic arrays of neuronal subtypes in th...
To model human neural-cell-fate specification and to provide cells for regenerative therapies, we ha...
Transplantation of neural progenitors or stem cells is a most useful tool to investigate the relativ...
In this study we have examined the migration and phenotypic differentiation of human expanded neural...
The rat neural cell line RN33B has a remarkable ability to undergo region-specific neuronal differen...
Here we examined the ability of human neural progenitors from the embryonic forebrain, expanded for ...
Transplantation of immature CNS-derived cells into the developing brain is a powerful approach to in...
Human pluripotent stem cells have the capacity for directed differentiation into a wide variety of n...
by exposing them to a different host microenvironment is a matter of controversy. Many reports on t...
In vitro, expanded neurospheres exhibit multipotent properties and can differentiate into neurons, a...
AbstractThe developmental potential of neural progenitors derived from the E13.5–E14 lateral or medi...
To model human neural-cell-fate specification and to provide cells for regenerative therapies, we ha...
[[abstract]]The central nervous system (CNS) is a highly complicate network in the brain that can be...
Transplantation of embryonic or stem cell derived neurons has been proposed as a potential therapy f...
We have recently characterized a stem cell population isolated from the rodent amniotic membrane ter...
AbstractNeural Precursor Cells (NPCs) generate complex stereotypic arrays of neuronal subtypes in th...
To model human neural-cell-fate specification and to provide cells for regenerative therapies, we ha...
Transplantation of neural progenitors or stem cells is a most useful tool to investigate the relativ...
In this study we have examined the migration and phenotypic differentiation of human expanded neural...
The rat neural cell line RN33B has a remarkable ability to undergo region-specific neuronal differen...
Here we examined the ability of human neural progenitors from the embryonic forebrain, expanded for ...
Transplantation of immature CNS-derived cells into the developing brain is a powerful approach to in...
Human pluripotent stem cells have the capacity for directed differentiation into a wide variety of n...
by exposing them to a different host microenvironment is a matter of controversy. Many reports on t...
In vitro, expanded neurospheres exhibit multipotent properties and can differentiate into neurons, a...
AbstractThe developmental potential of neural progenitors derived from the E13.5–E14 lateral or medi...
To model human neural-cell-fate specification and to provide cells for regenerative therapies, we ha...
[[abstract]]The central nervous system (CNS) is a highly complicate network in the brain that can be...
Transplantation of embryonic or stem cell derived neurons has been proposed as a potential therapy f...
We have recently characterized a stem cell population isolated from the rodent amniotic membrane ter...
AbstractNeural Precursor Cells (NPCs) generate complex stereotypic arrays of neuronal subtypes in th...
To model human neural-cell-fate specification and to provide cells for regenerative therapies, we ha...