Presynaptic Terminal

The presynaptic terminal is the specialized endpoint of a neuron’s axon that releases chemical signals to communicate with a postsynaptic cell. When an action potential reaches the terminal, voltage-gated calcium channels open, and incoming calcium triggers synaptic vesicles to fuse with the presynaptic membrane and release neurotransmitters into the synaptic cleft. These molecules bind receptors on the neighboring cell, influencing its electrical or biochemical response. Studying presynaptic terminals helps explain synaptic transmission, neural circuit function, and changes in communication caused by development, disease, or pharmacological treatments, making them central to research in neurobiology and therapeutic discovery.

Presynaptic Terminal - Related Videos

Research

JoVE Journal - Biology
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Dopamine Release at Individual Presynaptic Terminals Visualized with FFNs

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Cited by 10 •

2009

A new means to measure neurotransmission optically using fluorescent dopamine analogs.

Research

JoVE Journal - Neuroscience
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Vibrodissociation of Neurons from Rodent Brain Slices to Study Synaptic Transmission and Image Presynaptic Terminals

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Cited by 17 •

2011

This report demonstrates a technique for mechanical isolation of individual viable neurons retaining attached presynaptic boutons. Vibrodissociated neurons have the advantages of rapid production, excellent pharmacological control and improved space-clamp without influence from neighboring cells. This method can be used for imaging of synaptic elements and patch-clamp recording.

Research

JoVE Journal - Biology

Presynaptically Silent Synapses Studied with Light Microscopy

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Cited by 14 •

2010

Glutamatergic synapses can switch from an active mode to a silent mode. We demonstrate that presynaptic activity status in dissociated culture of rodent neurons is visualized using a fixable form of the FM1-43 dye to visualize active synapses and immunostaining with vGluT-1 antibody to visualize all glutamate synapses.

Research

JoVE Journal - Neuroscience
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In Vivo Single-Molecule Tracking at the Drosophila Presynaptic Motor Nerve Terminal

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Cited by 14 •

2018

Here we illustrate how single molecule photo-activated localization microscopy can be carried out on the motor nerve terminal of a live Drosophila melanogaster third instar larva.

Acute Dissociation of Lamprey Reticulospinal Axons to Enable Recording from the Release Face Membrane of Individual Functional Presynaptic Terminals

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Cited by 1 •

2014

Recording Ca2+ currents at the presynaptic release face membrane is key to a precise understanding of Ca2+ entry and neurotransmitter release. We present an acute dissociation of the lamprey spinal cord that yields functional isolated reticulospinal axons, permitting recording directly from the release face membrane of individual presynaptic terminals.

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