Neuromuscular networks assemble during early human embryonic development and are essential for the control of body movement. Previous neuromuscular junction modeling efforts using human pluripotent stem cells (hPSCs) generated either spinal cord neurons or skeletal muscles in monolayer culture. Here, we use hPSC-derived axial stem cells, the building blocks of the posterior body, to simultaneously generate spinal cord neurons and skeletal muscle cells that self-organize to generate human neuromuscular organoids (NMOs) that can be maintained in 3D for several months. Single-cell RNA-sequencing of individual organoids revealed reproducibility across experiments and enabled the tracking of the neural and mesodermal differentiation trajectories...
Neuromuscular junctions (NMJs) are specialized synapses between the axon of the lower motor neuron a...
To date, the coculture of motoneurons (MNs) and skeletal muscle in a defined in vitro system has onl...
AbstractStriated skeletal muscle cells from humans represent a valuable source for in vitro studies ...
Abstract The complex neuromuscular network that controls body movements is the target of severe dise...
Functional in vitro models composed of human cells will constitute an important platform in the next...
Functional in vitro models composed of human cells will constitute an important platform in the next...
International audienceTwo-dimensional (2D) human skeletal muscle fiber cultures are ill-equipped to ...
Movement of skeletal-muscle fibers is generated by the coordinated action of several cells taking pa...
Two-dimensional (2D) human skeletal muscle fiber cultures are ill-equipped to support the contractil...
Since Lancaster et al. (2013) first described the formation of self-organizing cerebral organoids fo...
Organoids have improved disease modeling. Here, the authors generate human sensorimotor organoids de...
Neuromuscular junctions (NMJs) are synapses in the peripheral nervous system where signals are trans...
In vitro organoids derived from human pluripotent stem cells (hPSCs) have been developed as essentia...
Marwah Abd Al Samid,1 Jamie S McPhee,2 Jasdeep Saini,1 Tristan R McKay,1 Lorna M Fitzpatrick,1 Kamel...
To develop effective cures for neuromuscular diseases, human-relevant in vitro models of neuromuscul...
Neuromuscular junctions (NMJs) are specialized synapses between the axon of the lower motor neuron a...
To date, the coculture of motoneurons (MNs) and skeletal muscle in a defined in vitro system has onl...
AbstractStriated skeletal muscle cells from humans represent a valuable source for in vitro studies ...
Abstract The complex neuromuscular network that controls body movements is the target of severe dise...
Functional in vitro models composed of human cells will constitute an important platform in the next...
Functional in vitro models composed of human cells will constitute an important platform in the next...
International audienceTwo-dimensional (2D) human skeletal muscle fiber cultures are ill-equipped to ...
Movement of skeletal-muscle fibers is generated by the coordinated action of several cells taking pa...
Two-dimensional (2D) human skeletal muscle fiber cultures are ill-equipped to support the contractil...
Since Lancaster et al. (2013) first described the formation of self-organizing cerebral organoids fo...
Organoids have improved disease modeling. Here, the authors generate human sensorimotor organoids de...
Neuromuscular junctions (NMJs) are synapses in the peripheral nervous system where signals are trans...
In vitro organoids derived from human pluripotent stem cells (hPSCs) have been developed as essentia...
Marwah Abd Al Samid,1 Jamie S McPhee,2 Jasdeep Saini,1 Tristan R McKay,1 Lorna M Fitzpatrick,1 Kamel...
To develop effective cures for neuromuscular diseases, human-relevant in vitro models of neuromuscul...
Neuromuscular junctions (NMJs) are specialized synapses between the axon of the lower motor neuron a...
To date, the coculture of motoneurons (MNs) and skeletal muscle in a defined in vitro system has onl...
AbstractStriated skeletal muscle cells from humans represent a valuable source for in vitro studies ...