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The action of toxins on the voltage-gated sodium channel.

Leszek Janiszewski

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Abstract

The author discusses the recent findings concerning the influence of selected neurotoxins on the voltage-gated sodium channel. Sodium voltage-gated channels are blocked or modified by four of five classes of neurotoxical agents: guanidinum toxins (tetrodotoxin, saxitoxin), lipid soluble compounds (veratridine, grayanotoxin, batrachotoxin, aconitine, pyrethroids, brevetoxins), polipeptide toxins (alpha-scorpion and sea anemone toxins) and beta-scorpion toxins. The mode of operation of these toxins at the different binding sites within the channel is discussed.

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What this paper is about

The author discusses the recent findings concerning the influence of selected neurotoxins on the voltage-gated sodium channel. Sodium voltage-gated channels are blocked or modified by four of five classes of neurotoxical agents: guanidinum toxins (tetrodotoxin, saxitoxin), lipid soluble compounds (veratridine, grayanotoxin, batrachotoxin, aconitine, pyrethroids, brevetoxins), polipeptide toxins (alpha-scorpion and sea anemone toxins) and beta-scorpion toxins. The mode of operation of these toxins at the different binding sites within the channel is discussed.

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OpenAlex reports 11 citations for this work. Citation counts describe recorded attention and do not establish research quality.

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Available abstract

The author discusses the recent findings concerning the influence of selected neurotoxins on the voltage-gated sodium channel. Sodium voltage-gated channels are blocked or modified by four of five classes of neurotoxical agents: guanidinum toxins (tetrodotoxin, saxitoxin), lipid soluble compounds (veratridine, grayanotoxin, batrachotoxin, aconitine, pyrethroids, brevetoxins), polipeptide toxins (alpha-scorpion and sea anemone toxins) and beta-scorpion toxins. The mode of operation of these toxins at the different binding sites within the channel is discussed.

Key concepts: Veratridine, Batrachotoxin, Saxitoxin, Sodium channel, Sea anemone, Tetrodotoxin, Aconitine, Chemistry

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