Mouse Neurons-raphe from C57BL/6
Product Code:
SC-M1510-57
SC-M1510-57
Host Type:
Mouse
Mouse
Regulatory Status:
RUO
RUO
No additional charges, what you see is what you pay! *
Code | Size | Price |
---|
SC-M1510-57 | 1 x 10^6 cells/vial | £559.00 |
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This product comes from: United States.
Typical lead time: 10-14 working days.
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Typical lead time: 10-14 working days.
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Further Information
Extra Description:
Isolated from embryonic day 14 C57BL/6 mouse brain raphe. MN-r are cryopreserved as primary cultures and delivered frozen. Each vial contains >1 x 10^6 cells in 1 ml volume.
Long Description:
The tissue of the central nervous system is made up of two classes of cells that may be broadly categorized as neurons and glia. Neurons are anatomic, functional, and trophic units of the brain. Neurons are dynamically polarized cells responsible for electrochemically transmitting information throughout the nervous system. Scientists have characterized hundreds of neuron types based on location, morphology and gene expression. The raphe nuclei are clusters of mostly serotonergic neurons located in the brain stem. Raphe neurons send projections to the forebrain, brain stem and spinal cord to regulate mood, memory and circadian rhythms. Primary mouse neurons-raphe (MN-r) are a useful in vitromodel for studying conditions such as Alzheimer's disease, depression, and narcolepsy.
MN-r from ScienCell Research Laboratories are isolated from embryonic day 14 C57BL/6 mouse brain raphe. MN-r are cryopreserved at P0 and delivered frozen. Each vial contains >1 x 10^6 cells in 1 ml volume. MN-r are characterized by immunofluorescence with antibodies specific to β-tubulin III. MN-r are negative for mycoplasma, bacteria, yeast, and fungi. MN-r are guaranteed to further culture under the conditions provided by ScienCell Research Laboratories; however, MN-r are not recommended for expanding or long-term cultures since the cells do not proliferate in culture.
Recommended Medium - It is recommended to use Neuronal Medium (NM, Cat. #1521) for culturing MN-r in vitro.