Generation of mesencephalic dopamine (mesDA) neurons from human embryonic stem cells (hESCs) requires several stages of signaling from various extrinsic and intrinsic factors. To date, most methods incorporate exogenous treatment of Sonic hedgehog (SHH) to derive mesDA neurons. However, we and others have shown that this approach is inefficient for generating FOXA2+ cells, the precursors of mesDA neurons. As mesDA neurons are derived from the ventral floor plate (FP) regions of the embryonic neural tube, we sought to develop a system to derive FP cells from hESC. We show that forced expression of the transcription factor GLI1 in hESC at the earliest stage of neural induction, resulted in their commitment to FP lineage. The GLI1+ cells coexp...
BACKGROUND: Understanding how lineage choices are made during embryonic stem (ES) cell differentiati...
The therapeutic potential of embryonic stem (ES) cells is promising, but in many cases limited by ou...
Sonic Hedgehog (SHH) and WNT proteins are key regulators in many developmental processes, like embry...
Generation of mesencephalic dopamine (mesDA) neurons from human embryonic stem cells (hESCs) require...
The floor plate is one of the major organizers of the developing nervous system through its secretio...
Fulltext embargoed for: 12 months post date of publicationThe floor plate is one of the major organi...
Embryoid body (EB) formation and adherent culture (AD) paradigms are equivalently thought to be appl...
Induction of specific neuronal fates is restricted in time and space in the developing CNS through i...
SummaryThe floor plate (FP) is a critical signaling center during neural development located along t...
Sonic Hedgehog (SHH) and WNT proteins are key regulators in many developmental processes, like embry...
Since the first successful derivation of human embryonic stem cells (hESC), rapid progress has been ...
he capacity of pluripotency and self-renewal of human embryonic stem (hES) cells may provide unlimit...
The caudal neural plate is a distinct region of the embryo that gives rise to major progenitor linea...
The caudal neural plate is a distinct region of the embryo that gives rise to major progenitor linea...
SummaryEmbryoid body (EB) formation and adherent culture (AD) paradigms are equivalently thought to ...
BACKGROUND: Understanding how lineage choices are made during embryonic stem (ES) cell differentiati...
The therapeutic potential of embryonic stem (ES) cells is promising, but in many cases limited by ou...
Sonic Hedgehog (SHH) and WNT proteins are key regulators in many developmental processes, like embry...
Generation of mesencephalic dopamine (mesDA) neurons from human embryonic stem cells (hESCs) require...
The floor plate is one of the major organizers of the developing nervous system through its secretio...
Fulltext embargoed for: 12 months post date of publicationThe floor plate is one of the major organi...
Embryoid body (EB) formation and adherent culture (AD) paradigms are equivalently thought to be appl...
Induction of specific neuronal fates is restricted in time and space in the developing CNS through i...
SummaryThe floor plate (FP) is a critical signaling center during neural development located along t...
Sonic Hedgehog (SHH) and WNT proteins are key regulators in many developmental processes, like embry...
Since the first successful derivation of human embryonic stem cells (hESC), rapid progress has been ...
he capacity of pluripotency and self-renewal of human embryonic stem (hES) cells may provide unlimit...
The caudal neural plate is a distinct region of the embryo that gives rise to major progenitor linea...
The caudal neural plate is a distinct region of the embryo that gives rise to major progenitor linea...
SummaryEmbryoid body (EB) formation and adherent culture (AD) paradigms are equivalently thought to ...
BACKGROUND: Understanding how lineage choices are made during embryonic stem (ES) cell differentiati...
The therapeutic potential of embryonic stem (ES) cells is promising, but in many cases limited by ou...
Sonic Hedgehog (SHH) and WNT proteins are key regulators in many developmental processes, like embry...