SCC007
ReNcell CX Human Neural Progenitor Cell Line
ReNcell CX is an immortalized human neural progenitor cell line with the ability to readily differentiate into neurons & glial cells.
Synonym(s):
Human NSC Line, Human Neural Stem Cell Line, Human Neural Stem Cells
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About This Item
biological source
human
Quality Level
manufacturer/tradename
Chemicon®
ReNcell
technique(s)
cell culture | stem cell: suitable
input
sample type neural stem cell(s)
shipped in
liquid nitrogen
General description
ReNcell Now Used in a 3D Cell Model of Alzheimer′s Disease!
Tanzi, R and Kim, DY et. al. A three-dimensional human neural cell culture model of Alzheimer′s disease. Nature. 2014 Nov 13;515(7526):274-8.
(Published in Nature)
Application
Stem Cell Research
Biochem/physiol Actions
Preparation Note
Analysis Note
Other Notes
Legal Information
Disclaimer
Storage Class Code
12 - Non Combustible Liquids
WGK
WGK 3
Flash Point(F)
does not flash
Flash Point(C)
does not flash
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Articles
Derivation and characterization of functional human neural stem cell derived oligodendrocyte progenitor cells (OPCs) that efficiently myelinate primary neurons in culture.
Frequently asked questions about neural stem cells including NSC derivation, expansion and differentiation.
ReNcell neural progenitors are immortalized human neural stem cell lines that can differentiate into neurons, astrocytes sand oligodendrocytes.
Read types of stem cells including multipotent stem cells, Pluripotent stem cells and iPSCs and their applications in basic stem cell research, stem cell therapy and disease modelling
Protocols
A stem cell culture protocol to generate 3D NSC models of Alzheimer’s disease using ReNcell human neural stem cell lines.
Step-by-step culture protocols for neural stem cell culture including NSC isolation, expansion, differentiation and characterization.
Related Content
ReNcell® VM and ReNcell® CX are two well-established neural stem cell lines derived from developing human brains. ReNcell® VM and CX cells are generated from the ventral mesencephalon and cortical regions of the brain, respectively, and transduced with the myc transcription factor. Both cell lines offer phenotype and genotype stability, in addition to the multipotential neuronal differentiation capacity, over long-term culture. This article describes the characteristics and differentiation of ReNcell® lines. Results of calcium and membrane potential changes in response to various ligands are also shown. The convenience to maintain in culture and flexibility to differentiate to individual scientists’ needs make ReNcell® lines the ideal platform for research and discovery.
Our team of scientists has experience in all areas of research including Life Science, Material Science, Chemical Synthesis, Chromatography, Analytical and many others.
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