Vta Glutamate Neurons

VTA glutamate neurons are glutamate-releasing cells in the ventral tegmental area, a midbrain region that helps regulate reward, motivation, learning, and emotional behavior. When these neurons fire, calcium enters their axon terminals and triggers vesicular glutamate release onto target regions, including the nucleus accumbens and prefrontal cortex; some subpopulations can also co-release dopamine. Researchers study these cells with genetic labeling, optogenetic manipulation, electrophysiology, and circuit tracing to determine how excitatory signaling shapes reinforcement, aversion, and behavioral flexibility. This work improves understanding of neural circuit dysfunction associated with addiction and other neuropsychiatric conditions.

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JoVE EoE - Neurophysiology

Monitoring Dopamine Release in a Rat Model with VTA Dopaminergic Neuron Receptor Manipulation

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2025

This video demonstrates the implantation of electrodes and cannulas in an anesthetized rat to measure dopamine release in the nucleus accumbens using a potentiostat and the infusion of drugs to modulate dopaminergic activity in the ventral tegmental area.

Analyzing the Glutamate Release and Clearance at a Single Neuron Synapse in a Mouse Brain Slice

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2025

This video demonstrates evaluating glutamate release and clearance at single corticostriatal synapses in a mouse brain slice. Electrical stimulation facilitates glutamate release at the synapse. The released glutamate alters sensor protein's fluorescence, which decays over time, indicating release and clearance efficiency.

An In Vitro Technique to Study Glutamate Receptor Trafficking in Hippocampal Neurons

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2025

This video demonstrates an antibody-feeding approach to study the trafficking of glutamate receptors in primary hippocampal neuronal cultures. This approach allows the observation of receptor populations at both the plasma and internal membranes. Discrimination between these subsets is achieved by labeling the receptors before and after membrane permeabilization, using the same primary antibody but secondary antibodies conjugated to different fluorophores.

Fast Micro-iontophoresis of Glutamate and GABA: A Useful Tool to Investigate Synaptic Integration

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Cited by 8 •

2013

In this article we introduce fast micro-iontophoresis of neurotransmitters as a technique to investigate integration of postsynaptic signals with high spatial and temporal precision.

In Vivo Real-Time Glutamate Monitoring Using an Enzyme-Coated Microelectrode Array

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2025

In this video, a Multielectrode Array (MEA) coated with glutamate Oxidase is implanted into the brain tissue of an anesthetized mouse. Glutamate solution is injected into the extracellular space where the MEA detects the glutamate levels, enabling real-time monitoring of glutamate uptake by the astrocytes.

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