Apoptotic Neuronal Death

Apoptotic neuronal death is a regulated form of cell death in which neurons are selectively eliminated through an orderly, energy-dependent process, helping shape neural circuits during development and maintain tissue homeostasis. It commonly begins with intrinsic stress signals that disrupt mitochondrial function and release cytochrome c, activating initiator and executioner caspases that fragment cellular components without the inflammation typical of necrosis. In neuroscience, studying this pathway clarifies how neuronal populations are established and how excessive or insufficient apoptosis contributes to conditions such as neurodegeneration, injury, and developmental disorders. Its molecular markers and signaling steps also provide targets for investigating neuroprotective strategies and disease mechanisms.

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JoVE EoE - Neuropathology

TUNEL Assay for Detecting Apoptotic Cell Death in a Brain Slice

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2025

To detect apoptotic cell death using the TUNEL assay, treat the brain slice with the enzyme proteinase-K.

Modeling Reactive Oxygen Species-Induced Neuronal Death in Mouse Cerebellar Granule Neurons

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2025

This video outlines the generation of a neuronal injury model using reactive oxygen species (ROS) in mouse primary cerebellar granule neurons. It details the process of inducing oxidative stress by adding high concentrations of hydrogen peroxide. ROS exposure causes DNA strand breaks and genomic instability. Additionally, the oxidation of cellular proteins impairs their functions, while lipid peroxidation compromises membrane integrity. This cascade leads to cytochrome c release and caspase...

Neuronal Death Assay to Evaluate Cell Death in Ex Vivo Epilepsy Model

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2025

This video demonstrates the technique of assessing neuronal death in rhinal cortex-hippocampus organotypic slices. Neuronal death occurs via evolving epileptic seizures — resembling in vivo epilepsy — and is detected through dual-staining of the dead cells using propidium iodide and immunofluorescence.

An Ex Vivo Technique to Induce Neuronal Death via Oligodendrocyte-Specific CD8+ T Cells

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2025

This video demonstrates an ex vivo technique to induce brain cell death mediated through cytotoxic CD8+ T cells. Upon obtaining brain slices, activated oligodendrocyte-directed CD8+ T cells are transferred onto the slices to target the myelin sheath and oligodendrocytes. Post-incubation, the damage to myelin and neuronal death can be assessed histologically in the regions of interest.

Modeling Neuronal Death and Degeneration in Mouse Primary Cerebellar Granule Neurons

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Cited by 2 •

2017

This protocol describes a simple method for isolating and culturing primary mouse cerebral granule neurons (CGNs) from 6-7 day old pups, efficient transduction of CGNs for loss and gain of function studies, and modelling NMDA-induced neuronal excitotoxicity, low-potassium-induced cell death, DNA-damage, and oxidative stress using the same culture model.

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