Pre-clinical studies indicate that neural stem cells (NSCs) can limit or reverse CNS damage through direct cell replacement, promotion of regeneration, or delivery of therapeutic agents. Immortalized NSC lines are in growing demand due to the inherent limitations of adult patient-derived NSCs, including availability, expandability, potential for genetic modifications, and costs. Here, we describe the generation and characterization of a new human fetal NSC line, immortalized by transduction with L-MYC (LM-NSC008) that in vitro displays both self-renewal and multipotent differentiation into neurons, oligodendrocytes, and astrocytes. These LM-NSC008 cells were non-tumorigenic in vivo, and migrated to orthotopic glioma xenografts in immunodefi...
<div><p>Human embryonic stem cells (hESC) and induced pluripotent stem cells (iPSC) provide new pros...
Hemmer K, Zhang M, van Wuellen T, et al. Induced Neural Stem Cells Achieve Long-Term Survival and Fu...
© 2016 Lachlan Harris et al. The cerebral cortex is essential for our higher cognitive functions and...
SummaryPre-clinical studies indicate that neural stem cells (NSCs) can limit or reverse CNS damage t...
Human neural stem cells (hNSC) represent an essential source of renewable brain cells for both exper...
<div><p>Background</p><p>Preclinical studies indicate that neural stem cells (NSCs) can limit or rev...
A better understanding of the molecular mechanisms governing stem cell self-renewal will foster the ...
© 2015 Pino-Barrio et al. A better understanding of the molecular mechanisms governing stem cell sel...
A better understanding of the molecular mechanisms governing stem cell self-renewal will foster the ...
Isolation and expansion of neural stem cells (NSCs) of human origin are crucial for successful devel...
Isolation and expansion of neural stem cells (NSCs) of human origin are crucial for successful devel...
Large-scale expansion of lineage-committed stem cells can provide an excellent ex vivo model for stu...
As the success of stem cell-based therapies is contingent on efficient cell delivery to damaged area...
One of the landmark events of the past 25 years in neuroscience research was the establishment of ne...
Human bone marrow contains two major cell types, hematopoietic stem cells (HSCs) and mesenchymal ste...
<div><p>Human embryonic stem cells (hESC) and induced pluripotent stem cells (iPSC) provide new pros...
Hemmer K, Zhang M, van Wuellen T, et al. Induced Neural Stem Cells Achieve Long-Term Survival and Fu...
© 2016 Lachlan Harris et al. The cerebral cortex is essential for our higher cognitive functions and...
SummaryPre-clinical studies indicate that neural stem cells (NSCs) can limit or reverse CNS damage t...
Human neural stem cells (hNSC) represent an essential source of renewable brain cells for both exper...
<div><p>Background</p><p>Preclinical studies indicate that neural stem cells (NSCs) can limit or rev...
A better understanding of the molecular mechanisms governing stem cell self-renewal will foster the ...
© 2015 Pino-Barrio et al. A better understanding of the molecular mechanisms governing stem cell sel...
A better understanding of the molecular mechanisms governing stem cell self-renewal will foster the ...
Isolation and expansion of neural stem cells (NSCs) of human origin are crucial for successful devel...
Isolation and expansion of neural stem cells (NSCs) of human origin are crucial for successful devel...
Large-scale expansion of lineage-committed stem cells can provide an excellent ex vivo model for stu...
As the success of stem cell-based therapies is contingent on efficient cell delivery to damaged area...
One of the landmark events of the past 25 years in neuroscience research was the establishment of ne...
Human bone marrow contains two major cell types, hematopoietic stem cells (HSCs) and mesenchymal ste...
<div><p>Human embryonic stem cells (hESC) and induced pluripotent stem cells (iPSC) provide new pros...
Hemmer K, Zhang M, van Wuellen T, et al. Induced Neural Stem Cells Achieve Long-Term Survival and Fu...
© 2016 Lachlan Harris et al. The cerebral cortex is essential for our higher cognitive functions and...