Nervous Cells

Nervous system cells portfolio

Nervous system cells are highly specialized populations responsible for neuronal communication, synaptic signaling, myelination, neurovascular regulation, and central nervous system homeostasis. Interactions among neurons, glial cells, vascular cells, and immune-associated cells are critical for maintaining normal neural function and are closely involved in neurological disease progression and repair processes.

Our nervous cell collection provides physiologically relevant in vitro models for neuroscience research, neurodegenerative disease studies, neuroinflammation, neurovascular biology, glioma research, and regenerative medicine applications. The portfolio includes neurons, astrocytes, oligodendrocyte precursor cells, Schwann cells, pericytes, choroid plexus cells, vascular-associated cells, and glioblastoma-derived cells.

Product List

20+
Neural Cell
Models

100 %
Mycoplasma-Free
Tested

24-72 h
Rapid
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Our Nervous Cell Portfolio Highlights

Comprehensive Neural Cell Resources

Our collection covers major cellular components of the nervous system, supporting both fundamental neuroscience and translational research.

  • Diverse Neural & Glial Cell Types
    • Neurons, astrocytes, Schwann cells, and oligodendrocyte precursor cells
    • Region-specific neural cells from hippocampus, midbrain, spinal cord, brain stem, and retina
    • Primary and hiPSC-derived neural progenitor populations
  • Neurovascular & Supporting Cells
    • Brain vascular smooth muscle cells and pericytes
    • Choroid plexus epithelial, endothelial, and fibroblast cells
    • Meningeal and perineurial support cells
  • Specialized Research Models
    • GFP-expressing astrocytes for live-cell imaging
    • Glioblastoma multiforme primary tumor cells
    • Neuroimmune cell models for inflammation studies
  • Flexible Research Solutions
    • Cryopreserved primary neural cells
    • Custom sourcing and project-specific support

Neuroscience Research Applications

Our nervous system cell models support investigations into neural development, neurodegeneration, neurovascular biology, and regenerative medicine.

  • Neurodegenerative Disease Research

    Neurons, astrocytes, and oligodendrocyte precursor cells are widely used in studies of Alzheimer's disease, Parkinson's disease, ALS, multiple sclerosis, and related neurological disorders.

  • Neuron-Glia Interaction Studies

    Primary neural and glial cells facilitate investigations of synaptic function, myelination, neuroprotection, and neural circuit regulation.

  • Blood-Brain Barrier & Neurovascular Biology

    Neurovascular cells including pericytes, vascular smooth muscle cells, and choroid plexus cells support studies of CNS barrier function and neurovascular communication.

  • Neural Regeneration & Drug Discovery

    Neural cell models provide valuable platforms for neurotoxicity testing, target validation, regenerative medicine research, and CNS therapeutic screening.

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What types of nervous system cells are available?

Our portfolio includes neurons, astrocytes, Schwann cells, oligodendrocyte precursor cells, meningeal cells, perineurial cells, neurovascular cells, and glioblastoma-derived models representing both central and peripheral nervous systems.

Do you offer region-specific neural cell models?

Yes. We provide neural cells derived from the hippocampus, midbrain, spinal cord, retina, cerebellum, and brain stem, enabling studies of region-specific neurological functions and disease mechanisms.

Are neurovascular cells available for blood-brain barrier research?

Yes. Our collection includes brain vascular pericytes, vascular smooth muscle cells, choroid plexus endothelial cells, and related neurovascular cell types commonly used in BBB and CNS barrier studies.

What applications are supported by oligodendrocyte precursor cells?

Oligodendrocyte precursor cells are widely used in studies of myelination, remyelination, multiple sclerosis, neurodevelopment, and regenerative medicine research.

Can these cells be used for neurodegenerative disease research?

Absolutely. Primary neurons, astrocytes, glial cells, and neurovascular models provide valuable tools for investigating Alzheimer's disease, Parkinson's disease, ALS, neuroinflammation, and CNS therapeutic development.

For research use only. Not for any other purpose.