Caged Glutamate Uncaging

Caged glutamate uncaging is a neuroscience technique that uses light to release biologically active glutamate from an inactive, photolabile compound, enabling precise control of excitatory signaling. A focused light pulse breaks the chemical cage, rapidly liberating glutamate at a selected location and time so researchers can activate nearby glutamate receptors without relying on presynaptic neurotransmitter release. This approach allows controlled stimulation of individual dendritic spines, synapses, or neuronal processes while recording electrical or calcium responses. It is used to investigate synaptic transmission, dendritic integration, receptor function, and the cellular mechanisms underlying learning and synaptic plasticity.

Caged Glutamate Uncaging - Related Videos

Research

JoVE Journal - Biology

Lineage Labeling of Zebrafish Cells with Laser Uncagable Fluorescein Dextran

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Cited by 8 •

2011

This protocol delineates a way to label and trace the fate of small groups of cells zebrafish embryos using UV-uncaging of caged fluorescein, followed by whole mount immunolabeling to amplify the signal from the uncaged fluorescein.

Research

JoVE Journal - Neuroscience
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Multi-photon Intracellular Sodium Imaging Combined with UV-mediated Focal Uncaging of Glutamate in CA1 Pyramidal Neurons

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Cited by 6 •

2014

We describe the combination of focal UV-induced photo-activation of neuro-active compounds with whole-cell patch-clamp and multi-photon imaging of intracellular sodium transients in dendrites and spines of hippocampal neurons in acute tissue slices of the mouse brain.

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.

Glutamate and Hypoxia as a Stress Model for the Isolated Perfused Vertebrate Retina

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Cited by 16 •

2015

With this study, we introduce a standardized stress model for the isolated superfused bovine retina for future preclinical therapeutic testing. The effect of either hypoxia (pure N2) or glutamate stress (250 µM glutamate) on retinal function represented by a- and b-wave amplitudes was evaluated.

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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