Neurotoxins

Neurotoxins are chemical substances that damage or disrupt the function of neurons, making them important subjects in pharmacology, toxicology, and neuroscience. They act through diverse mechanisms, including blocking ion channels, altering neurotransmitter release, overstimulating or inhibiting receptors, and impairing axonal transport, which can interfere with synaptic communication and neuronal survival. Studying neurotoxins clarifies how the nervous system signals and responds to injury, while supporting the development of diagnostic tools and treatments. Controlled use of agents such as botulinum neurotoxin demonstrates how toxic mechanisms can be adapted for therapeutic applications, including reducing abnormal muscle activity and pain.

Neurotoxins - Related Videos

Research

JoVE Journal - Neuroscience

Isolation and Quantification of Botulinum Neurotoxin From Complex Matrices Using the BoTest Matrix Assays

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Cited by 5 •

2014

The BoTest Matrix botulinum neurotoxin (BoNT) detection assays rapidly purify and quantify BoNT from a range of sample matrices. Here, we present a protocol for the detection and quantification of BoNT from both solid and liquid matrices and demonstrate the assay with BOTOX, tomatoes, and milk.

Research

JoVE Journal - Neuroscience
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Functional Evaluation of Biological Neurotoxins in Networked Cultures of Stem Cell-derived Central Nervous System Neurons

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Cited by 9 •

2015

A custom protocol is described to differentiate mouse ES cells into defined populations of highly pure neurons exhibiting functioning synapses and emergent network behavior. Electrophysiological analysis demonstrates the loss of synaptic transmission following exposure to botulinum neurotoxin serotypes /A-/G and tetanus neurotoxin.

A High-throughput-compatible FRET-based Platform for Identification and Characterization of Botulinum Neurotoxin Light Chain Modulators

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Cited by 4 •

2013

The botulinum neurotoxin type A light chain (BoNT/A LC) is a metalloprotease that enters motor neurons, cleaves its substrate SNAP-25, and disrupts neurotransmission, thereby resulting in flaccid paralysis. Utilizing a high-throughput-compatible FRET-based assay, large libraries of small molecules can be screened for their impact on BoNT/A LC enzymatic activity.

A High Content Imaging Assay for Identification of Botulinum Neurotoxin Inhibitors

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Cited by 3 •

2014

Botulinum neurotoxin is one of the most potent toxins among Category-A biothreat agents, yet a post-exposure therapeutic is not available. The high content imaging approach is a powerful methodology for identifying novel inhibitors as it enables multiparameter screening using biologically relevant motor neurons, the primary target of this toxin.

Recording of Induced Seizures through Electroencephalography in Freely Moving Rat Pups

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2025

The video demonstrates the recording of electroencephalogram (EEG) signals from seizure-induced rat pups. Take a freely moving pup implanted with electrodes connected to a data acquisition system. A neurotoxin is administered to induce epileptic seizures, and the resulting electrical bursting activity is monitored using the EEG signal.

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