Neuronal Phenotype Study

A neuronal phenotype study characterizes the structural, molecular, and functional features that define a neuron and distinguish it from other cell types. In neuroscience, researchers assess properties such as cell morphology, gene or protein expression, neurotransmitter identity, and electrical activity to determine how neurons develop and operate. These analyses may combine microscopy, molecular profiling, and electrophysiological recording to link cellular traits with specific neural circuits or behaviors. Neuronal phenotype studies support research into development, neurodegenerative disease, injury, and therapeutic response by revealing how cellular changes alter nervous system function and helping evaluate models, biomarkers, and potential treatments.

Neuronal Phenotype Study - Related Videos

Research

JoVE EoE - Neuronal Culture Techniques

Preparation of a Micropatterned Substrate to Study Schwann Cell Phenotypes

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2025

The video describes the preparation of a micropatterned substrate to study cell phenotype specification. A protein-coated micropatterned PDMS stamp is used to transfer the micropattern on a PDMS-coated coverslip. The coverslip is then treated with a surfactant to hinder cell adhesion at the unwanted surfaces. Cells are then added to settle in the pattern and incubated for further analysis.

Assessing Neurodegenerative Phenotypes in Drosophila Dopaminergic Neurons by Climbing Assays and Whole Brain Immunostaining

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Cited by 57 •

2013

Here we describe two assays that have been established to study age-dependent neurodegeneration of dopaminergic (DA) neurons in Drosophila: the climbing/startle-induced negative geotaxis assay which allows to study the functional effects of DA neurons degeneration and the tyrosine hydroxylase immunostaining which is used to identify and count DA neurons in whole brain mounts.

Research

JoVE Journal - Neuroscience
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Studying the Integration of Adult-born Neurons

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Cited by 11 •

2011

A way to study the integration of newborn dentate granule cells in adult animals is described. This technique uses an engineered retrovirus to label newborn neurons, followed by electrophysiological recordings to determine in vivo functional integration.

Studying the Effect of Pesticides on Caenorhabditis elegans Neurons

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2025

This video demonstrates evaluating the neurodegenerative effects of a test chemical on Caenorhabditis elegans with fluorescently tagged neurons. Normal neurons show bright fluorescence of intact soma and processes, while diminished fluorescence, swollen soma, and punctuated processes indicate neurodegeneration.

An Indirect Neuron-Astrocyte Co-Culture Technique for Studying Neuron-Glia Interactions

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2025

This video illustrates a method for establishing an indirect neuron-astrocyte co-culture using a compartmentalized approach. In this setup, neurons and astrocytes are spatially separated but share a conditioned medium. Neurotrophic factors released by astrocytes promote neuron differentiation and the formation of synaptic connections, suggesting neuron-glia interactions.

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