Neuronal Differentiation

Neuronal differentiation is the biological process through which unspecialized cells acquire the structure and function of neurons, enabling the formation of functional nervous tissue. During this process, progenitor cells respond to developmental signals that regulate gene expression and guide changes in cell shape, axon and dendrite formation, neurotransmitter identity, and synaptic connectivity. In biology research, neuronal differentiation models help explain nervous system development and provide systems for studying neurodevelopmental disorders, neurotoxicity, and potential regenerative strategies. Comparing differentiation in primary cells, stem-cell-derived neurons, and organoid models can also reveal how cellular environments influence neuronal maturation and function.

Neuronal Differentiation - Related Videos

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JoVE EoE - Neuronal Culture Techniques

Differentiation of Neural Progenitor Cells into Neurons

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2025

The video showcased a cell culture method for differentiating neural progenitor cells into neurons. By incubating cells in a nutrient-rich medium supplemented with growth factors, the progenitor cells matured into neurons with developed axons and dendrites. A stabilizing agent ensured cell viability and protected against oxidative damage throughout the differentiation process.

Differentiation of a Human Neuroblastoma Cell Line into Mature Neurons

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2025

This video demonstrates a technique for transforming undifferentiated SH-SY5Y neuroblastoma cells into fully differentiated mature neurons using a systematic passaging technique. This involves culturing the cells in a series of media with gradually decreasing serum levels to inhibit the proliferation of epithelial-like cells while promoting the differentiation and proliferation of neuron-like cells. Additionally, the media is supplemented with retinoic acid and specific growth factors that...

Differentiating Immortalized Multipotent Otic Progenitors into Spiral Ganglion Neurons and Evaluating the Differentiation

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2025

The video demonstrates the differentiation of immortalized multipotent otic progenitors (iMOPs) into spiral ganglion neurons (SGNs) and immunofluorescence-based confirmation of the differentiation. The iMOPs are plated onto culture substrate-coated coverslips in a neuronal differentiation medium for differentiation into SGNs. The differentiated cells are labeled with antibodies specific for neuronal differentiation markers and analyzed under a microscope to confirm differentiation.

Stimulating Neuronal Cell Differentiation Using Gold Nanorods

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2025

This video demonstrates a technique to promote neuronal differentiation by exposing nerve cells to gold nanorods and laser light, which forms cell projections supported by the βIII-tubulin. Staining and observing tubulin and the cell nucleus with epifluorescence microscopy reveals the cell outgrowths, indicating the nanorods' efficacy in neuronal differentiation.

Efficient Differentiation of Mouse Embryonic Stem Cells into Motor Neurons

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Cited by 41 •

2012

We developed a new protocol to improve efficiency of in vitro differentiation of mouse embryonic stem cells into motor neurons. The differentiated ES cells acquired motor neurons features as evidenced by expression of neuronal and motor neuron markers using immunohistochemical techniques.

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