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Ciguatoxins: Cyclic Polyether Modulators of Voltage-gated Iion Channel Function

Ciguatoxins are cyclic polyether toxins, derived from marine dinoflagellates, which are responsible for the symptoms of ciguatera poisoning. Ingestion of tropical and subtropical fin fish contaminated by ciguatoxins results in an illness characterised by neurological, cardiovascular and gastrointest...

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Detalles Bibliográficos
Autores principales: Nicholson, Graham M., Lewis, Richard J.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Molecular Diversity Preservation International (MDPI) 2006
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3663417/
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author Nicholson, Graham M.
Lewis, Richard J.
author_facet Nicholson, Graham M.
Lewis, Richard J.
author_sort Nicholson, Graham M.
collection PubMed
description Ciguatoxins are cyclic polyether toxins, derived from marine dinoflagellates, which are responsible for the symptoms of ciguatera poisoning. Ingestion of tropical and subtropical fin fish contaminated by ciguatoxins results in an illness characterised by neurological, cardiovascular and gastrointestinal disorders. The pharmacology of ciguatoxins is characterised by their ability to cause persistent activation of voltage-gated sodium channels, to increase neuronal excitability and neurotransmitter release, to impair synaptic vesicle recycling, and to cause cell swelling. It is these effects, in combination with an action to block voltage-gated potassium channels at high doses, which are believed to underlie the complex of symptoms associated with ciguatera. This review examines the sources, structures and pharmacology of ciguatoxins. In particular, attention is placed on their cellular modes of actions to modulate voltage-gated ion channels and other Na(+)-dependent mechanisms in numerous cell types and to current approaches for detection and treatment of ciguatera.
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spelling pubmed-36634172013-05-28 Ciguatoxins: Cyclic Polyether Modulators of Voltage-gated Iion Channel Function Nicholson, Graham M. Lewis, Richard J. Mar Drugs Review Ciguatoxins are cyclic polyether toxins, derived from marine dinoflagellates, which are responsible for the symptoms of ciguatera poisoning. Ingestion of tropical and subtropical fin fish contaminated by ciguatoxins results in an illness characterised by neurological, cardiovascular and gastrointestinal disorders. The pharmacology of ciguatoxins is characterised by their ability to cause persistent activation of voltage-gated sodium channels, to increase neuronal excitability and neurotransmitter release, to impair synaptic vesicle recycling, and to cause cell swelling. It is these effects, in combination with an action to block voltage-gated potassium channels at high doses, which are believed to underlie the complex of symptoms associated with ciguatera. This review examines the sources, structures and pharmacology of ciguatoxins. In particular, attention is placed on their cellular modes of actions to modulate voltage-gated ion channels and other Na(+)-dependent mechanisms in numerous cell types and to current approaches for detection and treatment of ciguatera. Molecular Diversity Preservation International (MDPI) 2006-04-06 /pmc/articles/PMC3663417/ Text en © 2006 by MDPI Reproduction is permitted for noncommercial purposes.
spellingShingle Review
Nicholson, Graham M.
Lewis, Richard J.
Ciguatoxins: Cyclic Polyether Modulators of Voltage-gated Iion Channel Function
title Ciguatoxins: Cyclic Polyether Modulators of Voltage-gated Iion Channel Function
title_full Ciguatoxins: Cyclic Polyether Modulators of Voltage-gated Iion Channel Function
title_fullStr Ciguatoxins: Cyclic Polyether Modulators of Voltage-gated Iion Channel Function
title_full_unstemmed Ciguatoxins: Cyclic Polyether Modulators of Voltage-gated Iion Channel Function
title_short Ciguatoxins: Cyclic Polyether Modulators of Voltage-gated Iion Channel Function
title_sort ciguatoxins: cyclic polyether modulators of voltage-gated iion channel function
topic Review
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3663417/
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