Synaptosome Disruption

Synaptosome disruption is the controlled breakdown of synaptosomes, sealed nerve-terminal particles formed from neuronal tissue, to analyze the molecular components of synapses. Researchers typically use osmotic shock, mechanical homogenization, or detergents to rupture the synaptosomal membrane and release cytosolic contents while separating synaptic vesicles, membrane proteins, and organelles into distinct fractions. In neuroscience, this approach supports biochemical studies of neurotransmitter storage and release, receptor and transporter localization, mitochondrial function, and synaptic protein interactions. By linking subcellular fractions to synaptic activity, synaptosome disruption helps clarify mechanisms of neuronal communication and how disease or experimental treatments alter presynaptic function.

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JoVE EoE - Neuropathology

Live-cell Phagocytosis Assay of Microglia-Like Cells Using Human Synaptosomes

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2025

Source: Funes, S., et. al., Human Microglia-like Cells: Differentiation from Induced Pluripotent Stem Cells and In Vitro Live-cell Phagocytosis Assay using Human Synaptosomes. J. Vis. Exp. (2022)This video demonstrates an assay to study the phagocytic capacity of microglia-like cells using pH-sensitive fluorescent dye-labeled synaptosomes.

Measuring Dopamine Uptake in Mouse Brain Synaptosomes Using Radiolabeled Dopamine

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2025

This video demonstrates the assessment of dopamine uptake in synaptosomes harvested from mouse brains. It outlines steps for preparing synaptosomes for dopamine uptake via dopamine transporters, treating them with varying concentrations of radiolabeled dopamine, isolating the synaptosomes, and measuring radioactivity to quantify dopamine uptake.

Assessment of Dopaminergic Homeostasis in Mice by Use of High-performance Liquid Chromatography Analysis and Synaptosomal Dopamine Uptake

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Cited by 20 •

2017

Synaptosomal dopamine uptake and high-performance liquid chromatography analysis represent experimental tools to investigate dopamine homeostasis in mice by assessing the function of the dopamine transporter and levels of dopamine in striatal tissue, respectively. Here we present protocols to measure dopamine tissue content and assess the functionality of the dopamine transporter.

In Vitro Phagocytosis Assay: A Live Imaging Based Method to Study Real-time Astrocyte Mediated Synaptosome Phagocytosis

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2025

In this video, we evaluate the phagocytic capacity of purified astrocytes in vitro by live imaging assay. The assay serves as an effective screening platform to identify chemical compounds that can enhance or inhibit the phagocytic capacity of astrocytes.

Single Photon Emission Computed Tomography for Assessing Brain Function Disruption

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2025

A traumatic brain injury, or TBI, impairs blood flow to the impacted regions and disrupts the activity of dopaminergic neurons.To investigate TBI-associated disruptions, begin by intravenously injecting a lipophilic radioactive tracer into a patient.The tracer travels through the cerebral vessels and diffuses into cells of the cortical and subcortical brain tissue.Perform single photon emission computed tomography, or SPECT, to detect the tracer-emitted radiation. The resulting signal intensity...

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