Plated Human iPSC-Derived Cerebral Cortical Neurons (Male)

2520.00
Product Code: ax0025 Categories: , , .

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Description

Human iPSC-Derived Cerebral Cortical Neurons (Male) - Plated

Cerebral cortical neurons are implicated in numerous neurological diseases including Alzheimer’s disease, autism, epilepsy and frontotemporal dementia. Despite strong interest in these diseases, high quality human in vitro cell models for cortical neurophysiology have been unavailable until now. With our plated human iPSC-derived cerebral cortical neurons, we provide neuroscience researchers with assay-ready, pre-plated iPSC-derived neurons that have been highly characterised. Our in-house experts perform the plating and neuronal differentiation in order to save you time and increase the efficiency of your experiments. 

This product is a 96-well plate containing pre-plated and pre-differentiated iPSC-derived cerebral cortical neurons. Neural Stem Cells are seeded at the recommended plating density (70,000-200,000 cells/cm2) on a 96-well plate coated with SureBond-XF and are synchronously differentiated to neurons for two weeks. For other conditions, please inquire. The plate is shipped fresh and therefore shipping restrictions apply to this product so please inquire to check availability in your region. 

Click here to see the data on Axol Cerebral Cortical Neurons

Product Specification

Starting material Cord blood CD34+ cells
Donor gender Male
Donor age at sampling Newborn
HLA serotype A29 A68, B38(Bw4) B44(Bw4), Cw8 Cw12
Karyotype Normal
Reprogramming method Episomal vector
Induction method Monolayer & chemically defined medium
Genetic modification None
Size 1 x 96-well plate
Cell type iPSC-derived cerebral cortical neurons
Growth properties Adherent
Shipping conditions Ambient
Usage notes Upon receipt, incubate the plate at 37°C, 5% CO2 in a humidified incubator

Technical Resources

References

  • Read nowA. Odawara, H. Katoh, N. Matsuda, I. Suzuki. Induction of long-term potentiation and depression phenomena in human induced pluripotent stem cell-derived cortical neurons, Biochemical and Biophysical Research Communications (2015).