Stem Cells

HighQC™ Human iPSC-Derived Cortical Neurons (iPSC-derived, Normal)

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  • High Purity Levels
  • Precision and Reliability
  • Customization Options
Species

Human

Cat.No

ABC-SC207Y

Quality Control

All cells test negative for mycoplasma, bacteria, yeast, and fungi.

Product Category Stem Cells
Size/Quantity

1 vial

Cell Type

Brain Cell

Shipping Info

Dry Ice

Growth Conditions

37 °C, 5% CO2

Source Organ

iPSC-derived

Disease

Normal

Biosafety Level

1

Storage

Liquid Nitrogen

Product Type

Induced pluripotent stem cell-Derived cells (iPSC-Derived cells)

Description

HighQC™ Human iPSC-Derived Cortical Neurons (Normal) are fully differentiated, high-purity human neurons generated from healthy donor iPSCs through a proprietary cortical lineage induction protocol. These cells exhibit typical cortical neuronal morphology with extended neurites and express key neuronal and forebrain markers such as MAP2, βIII-tubulin, NeuN, and synaptic proteins. Functionally active, they form synaptically connected networks and display spontaneous and evoked action potentials in vitro. Designed for reproducibility and consistency, these cortical neurons provide a robust and physiologically relevant platform for studying cortical neurobiology, disease modeling, neurotoxicity, and drug discovery in both mono- and co-culture systems. The cells are rigorously tested to ensure they are free of contamination from HIV-1, HBV, HCV, Syphilis, Mycoplasma, Fungi, Yeast and Bacteria.

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Citation

When you publish your research, please cite our product as “AcceGen Biotech Cat.# XXX-0000”. In return, we’ll give you a $100 coupon. Simply click here and submit your paper’s PubMed ID (PMID).

Application

  • For Research Use Only.

  • HighQC™ Human iPSC-Derived Cortical Neurons (iPSC-derived, Normal) are an ideal cell model for neurodevelopment research, cortical circuit analysis, neurodegenerative disease modeling, neurotoxicity testing, and drug screening. They are suitable for co-culture with astrocytes or microglia to replicate complex brain microenvironments and disease phenotypes.

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High Viability
To succeed in cell culture
Precision and Reliability
To support a consistent result
Customization Options
Tailed to your research

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