Stem Cells

HighQC™ Human IPSC-Derived Neural Stem Cell-Alzheimer’s Disease Patient (PSEN2 N141I)

  • For research use only

Cat No.

ABC-SC0063T

Product Type

Human iPSCs

Cell Type

Neural Stem Cell

Species

Human

Growth Conditions

37 ℃, 5% CO2

Source Organ

iPSC

Disease

Alzheimer’s Disease

Storage

Liquid Nitrogen

HighQC™ Human IPSC-Derived Neural Stem Cell (Alzheimer’s, PSEN2 N141I) supports neurodegeneration modeling, PSEN2 mutation analysis, and AD drug testing.

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Description

HighQC™ Human IPSC-Derived Neural Stem Cells-Alzheimer's Disease Patient (PSEN2 N141I) are derived from a patient with familial Alzheimer's disease. These cells express typical markers of cortical neural stem and progenitor cells, such as PAX6, FOXG1, and Nestin, and are capable of differentiating into neurons and glial cells. The PSEN2 N141I mutation is associated with altered γ-secretase processing and early neuronal degeneration. These PSEN2 N141I iPSC-derived NSCs provide a valuable platform for investigating PSEN2-related pathogenic mechanisms and for studying gene–environment interactions in Alzheimer's disease development under in vitro controlled conditions. The cells undergo rigorous screening and isolation procedures, and are rigorously tested to ensure they are free of contamination from HIV-1, HBV, HCV, Syphilis, Mycoplasma, Fungi, Yeast, and Bacteria.
Product Code

HighQC™ Human IPSC-Derived Neural Stem Cell-Alzheimer’s Disease Patient (PSEN2 N141I), hIPSC-NSC-AD-PSEN2-N141I, Human IPSC Neural Stem Cells Alzheimer PSEN2 N141I

Species

Human

Cat.No

ABC-SC0063T

Product Category

Stem Cells

Size/Quantity

1 vial

Cell Type

Neural Stem Cell

Growth Mode

Adherent

Shipping Info

Dry Ice

Growth Conditions

37 ℃, 5% CO2

Source Organ

iPSC

Disease

Alzheimer’s Disease

Storage

Liquid Nitrogen

Product Type

Human iPSCs

Application

  • Derived from iPSCs with the PSEN2 N141I mutation, these neural stem cells enable investigation of PSEN2-mediated neurodegenerative mechanisms in Alzheimer’s disease. Researchers can examine endoplasmic reticulum stress, amyloid-beta generation, and mitochondrial defects using this disease-specific neural model, supporting both fundamental studies and drug discovery pipelines. Their unique genetic background makes them particularly valuable for exploring the distinct roles of PSEN2 mutations in early-onset Alzheimer’s pathogenesis.

Citation

When you publish your research, please cite our product as "AcceGen Biotech Cat.# XXX-0000". In return, we’ll give you a $200 coupon. Simply click here and submit your paper’s PubMed ID (PMID).

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