When treated with retinoic acid (RA), a human embryonal carcinoma (EC) cell line, NTera2 cl.D/1 (NT2), differentiates into several morphologically distinct cell types, which include terminally differentiated postmitotic central nervous system (CNS) neurons. Accumulating evidence has demonstrated the significant potential of NT2 cells in studies related to cancer therapy and neurodegenerative diseases However, preparation of enriched NT2 neurons often requires a lengthy period (co. five,weeks) and depends largely on tedious techniques similar to those used for primary neuronal cultures. Here, we report a rapid protocol for the preparation of these human CNS neurons. Using the method of cell aggregation, enriched NT2 neurons can he obtained i...
AbstractNeuronal differentiation from totipotent precursors in vitro, is thought to require two sign...
AbstractNeuronal differentiation from totipotent precursors in vitro, is thought to require two sign...
AbstractNT2 cells are a transfectable human embryonal carcinoma cell line, that can be differentiate...
Cells from the human teratocarcinoma line NTera-2 can be induced to terminally differentiate into po...
The human teratocarcinoma cell line NTera 2 (NT2) is a committed neuronal precursor line, capable of...
The NTERA2 cl D1 (NT2) cell line, derived from human teratocarcinoma, exhibits similar properties as...
NTERA2 embryonal carcinoma cells are pluripotent cells that originated from a metastasis of a testic...
There are few reliable cell systems available to study the process of human neural development. Embr...
AbstractThe human NTERA2/D1 (NT2) cells generate postmitotic neurons (NT2N cells) upon retinoic acid...
The human NTERA2/D1 (NT2) cells generate postmitotic neurons (NT2N cells) upon retinoic acid (RA) tr...
Pluripotent stem cell lines can be induced to differentiate into a range of somatic cell types in re...
It is understood that retinoic acid (RA), sonic hedgehog (Shh) and bone morphogenic proteins (BMPs) ...
This project aims to improve our understanding of how embryonic stem cells (ESCs) are induced to for...
Neural differentiation is controlled by complex molecular mechanisms that determine cell fate and di...
Neural differentiation is controlled by complex molecular mechanisms that determine cell fate and di...
AbstractNeuronal differentiation from totipotent precursors in vitro, is thought to require two sign...
AbstractNeuronal differentiation from totipotent precursors in vitro, is thought to require two sign...
AbstractNT2 cells are a transfectable human embryonal carcinoma cell line, that can be differentiate...
Cells from the human teratocarcinoma line NTera-2 can be induced to terminally differentiate into po...
The human teratocarcinoma cell line NTera 2 (NT2) is a committed neuronal precursor line, capable of...
The NTERA2 cl D1 (NT2) cell line, derived from human teratocarcinoma, exhibits similar properties as...
NTERA2 embryonal carcinoma cells are pluripotent cells that originated from a metastasis of a testic...
There are few reliable cell systems available to study the process of human neural development. Embr...
AbstractThe human NTERA2/D1 (NT2) cells generate postmitotic neurons (NT2N cells) upon retinoic acid...
The human NTERA2/D1 (NT2) cells generate postmitotic neurons (NT2N cells) upon retinoic acid (RA) tr...
Pluripotent stem cell lines can be induced to differentiate into a range of somatic cell types in re...
It is understood that retinoic acid (RA), sonic hedgehog (Shh) and bone morphogenic proteins (BMPs) ...
This project aims to improve our understanding of how embryonic stem cells (ESCs) are induced to for...
Neural differentiation is controlled by complex molecular mechanisms that determine cell fate and di...
Neural differentiation is controlled by complex molecular mechanisms that determine cell fate and di...
AbstractNeuronal differentiation from totipotent precursors in vitro, is thought to require two sign...
AbstractNeuronal differentiation from totipotent precursors in vitro, is thought to require two sign...
AbstractNT2 cells are a transfectable human embryonal carcinoma cell line, that can be differentiate...