Neural Cell Isolation

Neural cell isolation is the process of separating viable neurons, glial cells, or neural progenitors from nervous-system tissue for study in controlled laboratory conditions. It typically combines mechanical or enzymatic dissociation to break tissue into a cell suspension, followed by filtration, centrifugation, or marker-based sorting to enrich desired populations while preserving cell viability and identity. In neuroscience, isolated cells support investigations of neuronal development, synaptic function, neurodegeneration, and cellular responses to drugs or injury. Careful control of tissue source, dissociation conditions, and handling is essential because cellular stress and selective loss can alter the composition and behavior of the resulting preparation.

Neural Cell Isolation - Related Videos

Research

JoVE Journal - Neuroscience

Isolation and Culture of Neural Crest Cells from Embryonic Murine Neural Tube

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Cited by 26 •

2012

Isolation of embryonic neural crest from the neural tube facilitates the use of in vitro methods for studying migration, self-renewal, and multipotency of neural crest.

Isolating Cranial Neural Folds From a Chick Embryo for a Neural Crest Cell Culture

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2025

This video illustrates a technique for isolating cranial neural folds from the midbrain region of chick embryos. It presents a detailed dissection process of the neural folds, their placement, and attachment on fibronectin-coated coverslips, followed by the observation of neural crest cell migration from the neural folds.

Research

JoVE Journal - Neuroscience
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Enumeration of Neural Stem Cells Using Clonal Assays

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Cited by 5 •

2016

Neural stem cells (NSCs) refer to cells which can self-renew and differentiate into the three neural lineages. Here, we describe a protocol to determine NSC frequency in a given cell population using neurosphere formation and differentiation under clonal conditions.

Isolation and Culture of Adult Neural Stem Cells from the Mouse Subcallosal Zone

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Cited by 9 •

2016

Establishing culture systems for the expansion of adult neural stem cells (aNSCs) allows for the examination and application of aNSCs for therapy. The subcallosal zone (SCZ) has recently been recognized as a novel neuroblast-forming region in adult mice. Here, methods for the isolation, expansion, and differentiation of SCZ-aNSCs are described.

Culturing Human Pluripotent and Neural Stem Cells in an Enclosed Cell Culture System for Basic and Preclinical Research

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Cited by 3 •

2016

Here is a protocol to grow pluripotent stem cells (PSC) and neural stem cells (NSC) in an enclosed cell culture system that permits maximum sterility and reproducibility, replacing the traditional biosafety cabinet and incubator. This equipment meets clinical good manufacturing practice (cGMP) and clinical good lab practice (cGLP) guidelines.

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