Specific neuronal subtypes, especially motoneurons (MNs), derived from human stem cells provide a significant therapeutic potential for spinal cord diseases, such as amyotrophic lateral sclerosis (ALS) and spinal cord injury. So far, in vitro, MNs have only been successfully induced from embryonic stem cells (hESC) and human fetal cortical progenitors. Although neural progenitors from spinal cord would be a likely source for generating MNs, there has been no study reporting successful in vitro differentiation of MNs from spinal cord progenitors. This study first characterized a polyclonal spinal cord stem cell line isolated from an 8 week-old fetus. Then a paradigm was introduced to successfully induce MNs from this cell line, which was dem...
There are several therapeutic options for spinal cord injury (SCI), among these strategies stem cell...
Cell replacement using stem cells is a promising therapeutic approach to treat degenerative motor ne...
<div><p>Cell replacement using stem cells is a promising therapeutic approach to treat degenerative ...
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 induced pluripotent stem cell (hiPSC) derived motoneurons represent a crucial cellular tool to...
International audiencePrimary cultures of motoneurons represent a good experimental model for studyi...
International audiencePrimary cultures of motoneurons represent a good experimental model for studyi...
International audiencePrimary cultures of motoneurons represent a good experimental model for studyi...
The most important property of stem cells from different sources is the capacity to differentiate in...
Functional in vitro models composed of human cells will constitute an important platform in the next...
There are several therapeutic options for spinal cord injury (SCI), among these strategies stem cell...
Functional in vitro models composed of human cells will constitute an important platform in the next...
Cell replacement using stem cells is a promising therapeutic approach to treat degenerative motor ne...
Functional in vitro models composed of human cells will constitute an important platform in the next...
There are several therapeutic options for spinal cord injury (SCI), among these strategies stem cell...
Cell replacement using stem cells is a promising therapeutic approach to treat degenerative motor ne...
<div><p>Cell replacement using stem cells is a promising therapeutic approach to treat degenerative ...
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 induced pluripotent stem cell (hiPSC) derived motoneurons represent a crucial cellular tool to...
International audiencePrimary cultures of motoneurons represent a good experimental model for studyi...
International audiencePrimary cultures of motoneurons represent a good experimental model for studyi...
International audiencePrimary cultures of motoneurons represent a good experimental model for studyi...
The most important property of stem cells from different sources is the capacity to differentiate in...
Functional in vitro models composed of human cells will constitute an important platform in the next...
There are several therapeutic options for spinal cord injury (SCI), among these strategies stem cell...
Functional in vitro models composed of human cells will constitute an important platform in the next...
Cell replacement using stem cells is a promising therapeutic approach to treat degenerative motor ne...
Functional in vitro models composed of human cells will constitute an important platform in the next...
There are several therapeutic options for spinal cord injury (SCI), among these strategies stem cell...
Cell replacement using stem cells is a promising therapeutic approach to treat degenerative motor ne...
<div><p>Cell replacement using stem cells is a promising therapeutic approach to treat degenerative ...