Tetrodotoxin

Tetrodotoxin is a potent neurotoxin that disrupts nerve and muscle function by blocking electrical signaling, making it an important subject in biology and neurophysiology. It binds to voltage-gated sodium channels on cell membranes and prevents sodium ions from entering during action potential generation, thereby stopping the transmission of nerve impulses. Tetrodotoxin occurs in pufferfish and several other marine and terrestrial animals, where it may provide chemical defense, and it can cause severe neurological poisoning when ingested. Because its channel specificity helps reveal how excitable cells communicate, tetrodotoxin is widely used to study synaptic transmission, ion-channel function, and the cellular basis of paralysis.

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JoVE EoE - Neurophysiology

Testing Monosynaptic Connections Using Tetrodotoxin and Tetrodotoxin-Resistant Sodium Channels

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2025

This video demonstrates testing monosynaptic connections using a transgenic fly. The fly has tetrodotoxin-resistant sodium channels and red light-activated channels in its presynaptic neurons, which are optogenetically excited to transmit signals to postsynaptic neurons.

Microinjection of Tetrodotoxin into the Brain of an Awake Female Rat to Inhibit Ovulation

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2025

Source: Silva, C. et al. Unraveling the Role of Discrete Areas of the Rat Brain in the Regulation of Ovulation through Reversible Inactivation by Tetrodotoxin Microinjections. J. Vis. Exp. (2020)This video demonstrates the protocol for microinjection of tetrodotoxin (TTX) into the hypothalamus of a freely moving rat to transiently inhibit neuronal activity, suppress gonadotropin-releasing hormone secretion, and prevent ovulation.

Examining Monosynaptic Connections in Drosophila Using Tetrodotoxin Resistant Sodium Channels

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Cited by 8 •

2018

This article features a method to test the monosynaptic connections between neurons by employing tetrodotoxin and the tetrodotoxin-resistant sodium channel, NaChBac.

Unraveling the Role of Discrete Areas of the Rat Brain in the Regulation of Ovulation through Reversible Inactivation by Tetrodotoxin Microinjections

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2020

This protocol describes the construction of a low-cost microinjection system, its stereotaxic implantation into deep-brain structures and the procedure for timed microinjections of tetrodotoxin in awake and unrestrained rats. The goal is to reveal the participation of hypothalamic structures in the regulation of ovulation by inhibiting their neural activity.

Recording Gamma Band Oscillations From Pedunculopontine Nucleus Neurons in a Brain Slice

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2025

The video demonstrates the method to record gamma-band oscillations in PPN neurons. Using a sagittal brain section with synaptic blockers in aCSF, it employs positive current pulses via a patch pipette to open calcium channels, inducing crucial subthreshold activity for wakefulness.

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