Researches on neural differentiation using embryonic stem cells (ESC) require analysis of neurogenesis in conditions mimicking physiological cellular interactions as closely as possible. In this study, we report an air‐liquid interface‐based culture of human ESC. This culture system allows three‐dimensional cell expansion and neural differentiation in the absence of added growth factors. Over a 3‐month period, a macroscopically visible, compact tissue developed. Histological coloration revealed a dense neural‐like neural tissue including immature tubular structures. Electron microscopy, immunochemistry, and electrophysiological recordings demonstrated a dense network of neurons, astrocytes, and oligodendrocytes able to propagate signals. Wi...
The entire dissertation/thesis text is included in the research.pdf file; the official abstract appe...
Human embryonic stem cells (hES), derived from the inner cell mass of the pre-implantation embryo, m...
The human brain is arguably one of the most complex structures known to humankind. To understand the...
Researches on neural differentiation using embryonic stem cells (ESC) require analysis of neurogenes...
Embryonic stem cells (ESCs) offer attractive prospective as potential source of neurons for cell rep...
Human embryonic stem cells (hESCs) are pluripotent cells, capable of differentiation into different ...
During nervous system development, early neuroepithelial stem (NES) cells with a highly polarized mo...
We had reported that neural stem cells from human fetal striatum (hsNSCs) expressed neural stem cell...
<p><b>A</b>. Neural differentiation of hESC <i>in vitro</i>. Human embryonic stem cells were subject...
The connection of embryonic stem cell technology and developmental biology provides valuable tools t...
# The Author(s) 2012. This article is published with open access at Springerlink.com Abstract Plurip...
Human embryonic stem (hES) cells provide a promising supply of specific cell types for transplantati...
In vitro culture of primary neurons is widely adapted with embryonic but not mature brain tissue. He...
Differentiated human neural stem cells were cultured in an inert three-dimensional (3D) scaffold and...
Human embryonic stem (hES) cells provide a promising supply of specific cell types for transplantati...
The entire dissertation/thesis text is included in the research.pdf file; the official abstract appe...
Human embryonic stem cells (hES), derived from the inner cell mass of the pre-implantation embryo, m...
The human brain is arguably one of the most complex structures known to humankind. To understand the...
Researches on neural differentiation using embryonic stem cells (ESC) require analysis of neurogenes...
Embryonic stem cells (ESCs) offer attractive prospective as potential source of neurons for cell rep...
Human embryonic stem cells (hESCs) are pluripotent cells, capable of differentiation into different ...
During nervous system development, early neuroepithelial stem (NES) cells with a highly polarized mo...
We had reported that neural stem cells from human fetal striatum (hsNSCs) expressed neural stem cell...
<p><b>A</b>. Neural differentiation of hESC <i>in vitro</i>. Human embryonic stem cells were subject...
The connection of embryonic stem cell technology and developmental biology provides valuable tools t...
# The Author(s) 2012. This article is published with open access at Springerlink.com Abstract Plurip...
Human embryonic stem (hES) cells provide a promising supply of specific cell types for transplantati...
In vitro culture of primary neurons is widely adapted with embryonic but not mature brain tissue. He...
Differentiated human neural stem cells were cultured in an inert three-dimensional (3D) scaffold and...
Human embryonic stem (hES) cells provide a promising supply of specific cell types for transplantati...
The entire dissertation/thesis text is included in the research.pdf file; the official abstract appe...
Human embryonic stem cells (hES), derived from the inner cell mass of the pre-implantation embryo, m...
The human brain is arguably one of the most complex structures known to humankind. To understand the...