It is understood that retinoic acid (RA), sonic hedgehog (Shh) and bone morphogenic proteins (BMPs) play an important role in cell fate determination and the specification of inter-neurons and motor neurons along the dorsal-ventral axis in the neural tube. In this study, we investigated the function of these signalling molecules to instruct the differentiation of human pluripotent stem cells to form specific neuronal subtypes. TERA2.cl.SP12 embryonal carcinoma (EC) cells are a robust caricature of human embryogenesis and an accepted model of neural differentiation. Gene and protein expression analyses using RT-PCR, western blotting and immunocytochemical techniques indicated that human EC cells respond to RA, BMPs and Shh in a conserved man...
Embryonic stem cells (ESC’s) are pluripotent cells that can specialize into various cell types. In t...
AbstractRetinoic acid (RA) is one of the most important morphogens, and its embryonic distribution c...
Pluripotent murine embryonic stem (ES) cells can differentiate into all cell types both in vivo and ...
The therapeutic potential of embryonic stem (ES) cells is promising, but in many cases limited by ou...
This project aims to improve our understanding of how embryonic stem cells (ESCs) are induced to for...
There are few reliable cell systems available to study the process of human neural development. Embr...
Pluripotent stem cell lines can be induced to differentiate into a range of somatic cell types in re...
BACKGROUND: Human embryonic stem cells (hESC) provide a unique model to study early events in human ...
Neural differentiation is controlled by complex molecular mechanisms that determine cell fate and di...
The study of neuronal differentiation of embryonic stem cells has raised major interest over recent ...
The controlled differentiation of mouse embryonic stem (ES) cells into near homogeneous populations ...
Human embryonic stem cells (hESCs) have extensive self-renewal capacity and are competent to differe...
When treated with retinoic acid (RA), a human embryonal carcinoma (EC) cell line, NTera2 cl.D/1 (NT2...
NTERA2 embryonal carcinoma cells are pluripotent cells that originated from a metastasis of a testic...
Retinoic acid (RA) has been suggested to play an important role in CNS development but little is kno...
Embryonic stem cells (ESC’s) are pluripotent cells that can specialize into various cell types. In t...
AbstractRetinoic acid (RA) is one of the most important morphogens, and its embryonic distribution c...
Pluripotent murine embryonic stem (ES) cells can differentiate into all cell types both in vivo and ...
The therapeutic potential of embryonic stem (ES) cells is promising, but in many cases limited by ou...
This project aims to improve our understanding of how embryonic stem cells (ESCs) are induced to for...
There are few reliable cell systems available to study the process of human neural development. Embr...
Pluripotent stem cell lines can be induced to differentiate into a range of somatic cell types in re...
BACKGROUND: Human embryonic stem cells (hESC) provide a unique model to study early events in human ...
Neural differentiation is controlled by complex molecular mechanisms that determine cell fate and di...
The study of neuronal differentiation of embryonic stem cells has raised major interest over recent ...
The controlled differentiation of mouse embryonic stem (ES) cells into near homogeneous populations ...
Human embryonic stem cells (hESCs) have extensive self-renewal capacity and are competent to differe...
When treated with retinoic acid (RA), a human embryonal carcinoma (EC) cell line, NTera2 cl.D/1 (NT2...
NTERA2 embryonal carcinoma cells are pluripotent cells that originated from a metastasis of a testic...
Retinoic acid (RA) has been suggested to play an important role in CNS development but little is kno...
Embryonic stem cells (ESC’s) are pluripotent cells that can specialize into various cell types. In t...
AbstractRetinoic acid (RA) is one of the most important morphogens, and its embryonic distribution c...
Pluripotent murine embryonic stem (ES) cells can differentiate into all cell types both in vivo and ...