University of Wollongong
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Conotoxins targeting neuronal voltage-gated sodium channel subtypes: potential analgesics?

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posted on 2024-11-15, 02:04 authored by Oliver Knapp, Jeffrey McArthur, David AdamsDavid Adams
Voltage-gated sodium channels (VGSC) are the primary mediators of electrical signal amplification and propagation in excitable cells. VGSC subtypes are diverse, with different biophysical and pharmacological properties, and varied tissue distribution. Altered VGSC expression and/or increased VGSC activity in sensory neurons is characteristic of inflammatory and neuropathic pain states. Therefore, VGSC modulators could be used in prospective analgesic compounds. VGSCs have specific binding sites for four conotoxin families: μ-, μO-, δ- and ί-conotoxins. Various studies have identified that the binding site of these peptide toxins is restricted to well-defined areas or domains. To date, only the μ- and μO-family exhibit analgesic properties in animal pain models. This review will focus on conotoxins from the μ- and μO-families that act on neuronal VGSCs. Examples of how these conotoxins target various pharmacologically important neuronal ion channels, as well as potential problems with the development of drugs from conotoxins, will be discussed.

History

Citation

Knapp, O., McArthur, J. R. & Adams, D. J. (2012). Conotoxins targeting neuronal voltage-gated sodium channel subtypes: potential analgesics?. Toxins, 4 (11), 1236-1260.

Journal title

Toxins

Volume

4

Issue

11

Pagination

1236-1260

Language

English

RIS ID

105246

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