The ability to generate spinal cord motor neurons from human pluripotent stem cells (hPSCs) is of great use for modelling motor neuron–based diseases and cell-replacement therapies. A key step in the design of hPSC differentiation strategies aiming to produce motor neurons involves induction of the appropriate anteroposterior (A-P) axial identity, an important factor influencing motor neuron subtype specification, functionality, and disease vulnerability. Most current protocols for induction of motor neurons from hPSCs produce predominantly cells of a mixed hindbrain/cervical axial identity marked by expression of Hox paralogous group (PG) members 1-5, but are inefficient in generating high numbers of more posterior thoracic/lumbosacral Hox...
BACKGROUND: There are no cures or efficacious treatments for severe motor neuron diseases. It is ext...
Cells of the spinal cord and somites arise from shared, dual-fated precursors, located towards the p...
There are no cures or efficacious treatments for severe motor neuron diseases. It is extremely diffi...
The anteroposterior axial identity of motor neurons (MNs) determines their functionality and vulnera...
Motor neurons are cells located in specific areas of the central nervous system, such as brain corte...
Motor neuron (MN) diseases, including amyotrophic lateral sclerosis, progressive bulbar palsy, prima...
We describe here a method to obtain functional spinal and cranial motor neurons from human induced p...
Spinal cord impairment involving motor neuron degeneration and demyelination can cause life-long dis...
Resolving the mechanisms underlying human neuronal diversification remains a major challenge in deve...
Embryonic stem cells are pluripotent cells with the potential to differentiate into any cell type in...
Objectives: Transplantation of neural progenitor cells (NPCs) derived from human-induced pluripotent...
INTRODUCTION: Induced pluripotent stem cells (iPSCs) have emerged as a promising cell source for imm...
Limited access to human neurons, especially motor neurons (MNs), was a major challenge for studying ...
Cells of the spinal cord and somites arise from shared, dual-fated precursors, located towards the p...
Human pluripotent stem cells (hPSCs) have become a powerful resource to study embryonic development,...
BACKGROUND: There are no cures or efficacious treatments for severe motor neuron diseases. It is ext...
Cells of the spinal cord and somites arise from shared, dual-fated precursors, located towards the p...
There are no cures or efficacious treatments for severe motor neuron diseases. It is extremely diffi...
The anteroposterior axial identity of motor neurons (MNs) determines their functionality and vulnera...
Motor neurons are cells located in specific areas of the central nervous system, such as brain corte...
Motor neuron (MN) diseases, including amyotrophic lateral sclerosis, progressive bulbar palsy, prima...
We describe here a method to obtain functional spinal and cranial motor neurons from human induced p...
Spinal cord impairment involving motor neuron degeneration and demyelination can cause life-long dis...
Resolving the mechanisms underlying human neuronal diversification remains a major challenge in deve...
Embryonic stem cells are pluripotent cells with the potential to differentiate into any cell type in...
Objectives: Transplantation of neural progenitor cells (NPCs) derived from human-induced pluripotent...
INTRODUCTION: Induced pluripotent stem cells (iPSCs) have emerged as a promising cell source for imm...
Limited access to human neurons, especially motor neurons (MNs), was a major challenge for studying ...
Cells of the spinal cord and somites arise from shared, dual-fated precursors, located towards the p...
Human pluripotent stem cells (hPSCs) have become a powerful resource to study embryonic development,...
BACKGROUND: There are no cures or efficacious treatments for severe motor neuron diseases. It is ext...
Cells of the spinal cord and somites arise from shared, dual-fated precursors, located towards the p...
There are no cures or efficacious treatments for severe motor neuron diseases. It is extremely diffi...