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Primary Cells

Mouse Brain Hippocampal Neurons

  • For research use only

Cat No.

ABC-TC3918

Product Type

Mouse Primary Cells

Cell Type

Neuron

Species

Mouse

Growth Conditions

37 ℃, 5% CO2

Source Organ

Brain

Disease

Normal

Storage

Liquid Nitrogen

Mouse Hippopcampal Neurons are isolated from E16-17, CD-1 mice.

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Description

Mouse Brain Hippocampal Neurons are isolated from the hippocampus of healthy mice. They exhibit characteristic multipolar morphology with extensive dendritic arborization and axonal projections essential for neural network formation. Functionally, hippocampal neurons are critical for learning, memory formation, and spatial navigation. These mouse hippocampal neurons are implicated in neurodegenerative disorders such as Alzheimer’s disease. The cells express neuronal markerβ-tubulin III, while karyotype analysis shows normal diploidy. These post-mitotic cells do not proliferate in vitro and demonstrate exquisite sensitivity to neurotoxic insults including oxidative stress and glutamate excitotoxicity. Each lot undergoes rigorous screening and isolation procedures, and is rigorously tested to ensure it is free of contamination from Mycoplasma, Fungi, Yeast, and Bacteria.

Product Code

Mouse Brain Hippocampal Neurons, Mouse Hippocampal Neurons, Murine Hippocampus Neurons, Primary Hippocampal Neurons (Mouse)

Species

Mouse

Cat.No

ABC-TC3918

Product Category

Primary Cells

Size/Quantity

1 vial

Cell Type

Neuron

Growth Mode

Adherent

Shipping Info

Dry Ice

Growth Conditions

37 ℃, 5% CO2

Source Organ

Brain

Disease

Normal

Biosafety Level

1

Storage

Liquid Nitrogen

Product Type

Mouse Primary Cells

Quality Control

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

Application

  • Mouse Brain Hippocampal Neurons can be used as an in vitro cell model to study the pathogenesis of neurodegenerative diseases and cognitive disorders, such as Alzheimer’s disease, epilepsy, and depression. For example, by investigating their synaptic plasticity, neurotransmitter release, and response to amyloid-beta plaques or oxidative stress, researchers can explore molecular pathways underlying neuronal dysfunction. The cells are particularly valuable for electrophysiological studies, high-content screening, and neural circuit modeling, providing crucial insights into both normal hippocampal function and disease 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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