Foma-1 Neurons

Foma-1 neurons are a specialized neuronal model used to study cellular structure, function, and signaling in neuroscience. Maintained under controlled laboratory conditions, these cells provide a consistent system for examining neuronal morphology, viability, and responses to experimental treatments while reducing variability between samples. Researchers can use Foma-1 neurons to investigate neural mechanisms, evaluate cellular effects of compounds or environmental conditions, and develop experimental models of nervous-system function. Their use supports reproducible studies of neuronal behavior and may help connect cellular observations with broader questions in neurobiology.

Foma-1 Neurons - Related Videos

Research

JoVE Journal - Neuroscience
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Inducing Plasticity of Astrocytic Receptors by Manipulation of Neuronal Firing Rates

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Cited by 8 •

2014

Here we describe an adaptation of protocols used to induce homeostatic plasticity in neurons for the study of plasticity of astrocytic G protein-coupled receptors. Recently used to examine changes in astrocytic group I mGluRs in juvenile mice, the method can be applied to measure scaling of various astrocytic GPCRs, in tissue from adult mice in situ and in vivo, and to gain a better appreciation of the sensitivity of astrocytic receptors to changes in neuronal activity.

Research

JoVE EoE - Neurophysiology

Recording Electrophysiological Activity of the Neuronal Network in a Neuron-Astrocyte Co-culture

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2025

This video demonstrates establishing a neuron-astrocyte co-culture for recording neuronal network activity. Upon establishing the co-culture of motor neurons and astrocytes on a multi-electrode array (MEA) plate, the synchronous rhythmic electrical activity of the neuronal network was recorded extracellularly using the MEA.

Generating a Low-Density Primary Neuron Culture From Frozen Embryonic Neurons

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2025

This video demonstrates the method of culturing cryopreserved embryonic neurons, involving controlled thawing, dilution with a neurobasal medium, and seeding onto a poly-L-lysine-coated plate. Subsequent incubation supports the growth and maintenance of neuronal connections.

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.

Direct Neuronal Reprogramming of Mouse Astrocytes into Neurons

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2025

This video showcases the direct reprogramming of astrocytes expressing transforming factors into neurons. Transformation factors trigger a cascade of molecular events facilitating astrocyte-to-neuron conversion. The process is further supported by supplying specific agents and supplements through a neuronal differentiation medium.

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