Our understanding of motor neuron biology in humans is derived mainly from investigation of human postmortem tissue and more indirectly from live animal models such as rodents. Thus generation of motor neurons from human embryonic stem cells and human induced pluripotent stem cells is an important new approach to model motor neuron function. To be useful models of human motor neuron function, cells generated in vitro should develop mature properties that are the hallmarks of motor neurons in vivo such as elaborated neuronal processes and mature electrophysiological characteristics. Here we have investigated changes in morphological and electrophysiological properties associated with maturation of neurons differentiated from human embryonic ...
Primary rodent neurons and immortalised cell lines have overwhelmingly been used for in vitro studie...
Spinal motor neurons (MNs) are a diverse group of specialized neurons that innervate and control all...
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...
Human induced pluripotent stem cell (hiPSC) derived motoneurons represent a crucial cellular tool to...
Primary rodent neurons and immortalised cell lines have overwhelmingly been used for in vitro studie...
The therapeutic potential of embryonic stem (ES) cells is promising, but in many cases limited by ou...
Primary rodent neurons and immortalised cell lines have overwhelmingly been used for in vitro studie...
Specific neuronal subtypes, especially motoneurons (MNs), derived from human stem cells provide a si...
Specific neuronal subtypes, especially motoneurons (MNs), derived from human stem cells provide a si...
Human pluripotent stem cells (hPSCs) are derived from the developing blastocyst or through transcrip...
Motor neurons (MNs) derived from human-induced pluripotent stem cells (hiPSC) hold great potential f...
Specific neuronal subtypes, especially motoneurons (MNs), derived from human stem cells provide a si...
Motor neuron loss is characteristic of cervical spinal cord injury (SCI) and contributes to function...
In vitro generation of functional neurons from embryonic stem (ES) cells and induced pluripotent ste...
Primary rodent neurons and immortalised cell lines have overwhelmingly been used for in vitro studie...
Spinal motor neurons (MNs) are a diverse group of specialized neurons that innervate and control all...
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...
Human induced pluripotent stem cell (hiPSC) derived motoneurons represent a crucial cellular tool to...
Primary rodent neurons and immortalised cell lines have overwhelmingly been used for in vitro studie...
The therapeutic potential of embryonic stem (ES) cells is promising, but in many cases limited by ou...
Primary rodent neurons and immortalised cell lines have overwhelmingly been used for in vitro studie...
Specific neuronal subtypes, especially motoneurons (MNs), derived from human stem cells provide a si...
Specific neuronal subtypes, especially motoneurons (MNs), derived from human stem cells provide a si...
Human pluripotent stem cells (hPSCs) are derived from the developing blastocyst or through transcrip...
Motor neurons (MNs) derived from human-induced pluripotent stem cells (hiPSC) hold great potential f...
Specific neuronal subtypes, especially motoneurons (MNs), derived from human stem cells provide a si...
Motor neuron loss is characteristic of cervical spinal cord injury (SCI) and contributes to function...
In vitro generation of functional neurons from embryonic stem (ES) cells and induced pluripotent ste...
Primary rodent neurons and immortalised cell lines have overwhelmingly been used for in vitro studie...
Spinal motor neurons (MNs) are a diverse group of specialized neurons that innervate and control all...
Resolving the mechanisms underlying human neuronal diversification remains a major challenge in deve...