Modelling organophosphate intoxication in C. elegans highlights nicotinic acetylcholine receptor determinants that mitigate poisoning

PLoS One. 2023 Apr 21;18(4):e0284786. doi: 10.1371/journal.pone.0284786. eCollection 2023.

Abstract

Organophosphate intoxication via acetylcholinesterase inhibition executes neurotoxicity via hyper stimulation of acetylcholine receptors. Here, we use the organophosphate paraoxon-ethyl to treat C. elegans and use its impact on pharyngeal pumping as a bio-assay to model poisoning through these neurotoxins. This assay provides a tractable measure of acetylcholine receptor mediated contraction of body wall muscle. Investigation of the time dependence of organophosphate treatment and the genetic determinants of the drug-induced inhibition of pumping highlight mitigating modulation of the effects of paraoxon-ethyl. We identified mutants that reduce acetylcholine receptor function protect against the consequence of intoxication by organophosphates. Data suggests that reorganization of cholinergic signalling is associated with organophosphate poisoning. This reinforces the under investigated potential of using therapeutic approaches which target a modulation of nicotinic acetylcholine receptor function to treat the poisoning effects of this important class of neurotoxins.

Publication types

  • Research Support, N.I.H., Extramural
  • Research Support, Non-U.S. Gov't

MeSH terms

  • Acetylcholinesterase / metabolism
  • Animals
  • Caenorhabditis elegans / genetics
  • Caenorhabditis elegans / metabolism
  • Cholinesterase Inhibitors / therapeutic use
  • Neurotoxins
  • Organophosphate Poisoning* / drug therapy
  • Organophosphates / therapeutic use
  • Organophosphates / toxicity
  • Paraoxon / therapeutic use
  • Paraoxon / toxicity
  • Receptors, Nicotinic* / genetics

Substances

  • ethylparaoxon
  • Paraoxon
  • Cholinesterase Inhibitors
  • Acetylcholinesterase
  • Receptors, Nicotinic
  • Neurotoxins
  • Organophosphates