Neurobehavioural Effects of the Methylimidazolium Ionic Liquid M8OI in Rats

Tarek M Abdelghany1,2,3, Alaa A Budastour4, Ahmed S Kamel1,5

  • 1Department of Pharmacology and Toxicology, Faculty of Pharmacy, Cairo University, Kasr El-Aini St., Cairo 11562, Egypt.

Insights

Methylimidazolium ionic liquid M8OI shows cytotoxicity by inhibiting mitochondrial complex I. While M8OI suppressed motor activity in rats, brain concentrations were too low to predict neural cell death.

Area of Science:

  • Toxicology
  • Neuroscience
  • Mitochondrial Biology

Background:

  • M8OI, a methylimidazolium ionic liquid, is cytotoxic via mitochondrial complex I inhibition.
  • Its mechanism resembles rotenone, prompting investigation into potential neurotoxicity.

Purpose of the Study:

  • To evaluate the neurotoxic potential of M8OI.
  • To assess M8OI's effects on mitochondrial function and cellular viability in vitro.
  • To examine M8OI's in vivo neurobehavioral effects and tissue distribution in rats.

Main Methods:

  • In vitro: Assessed cytotoxicity and mitochondrial respiration in SH-SY5Y cells using MTT reduction and Seahorse analysis.
  • In vivo: Rats received M8OI in drinking water for 20 weeks, followed by behavioral testing and LC-MS quantification of M8OI in tissues.
  • Investigated metabolic shifts using glucose and galactose in cell culture.

Main Results:

  • M8OI induced dose-dependent mitochondrial dysfunction and cytotoxicity in SH-SY5Y cells, with glucose protecting against toxicity.
  • In rats, M8OI brain concentrations were significantly lower than in vitro toxic levels.
  • Oral M8OI exposure suppressed motor activity in rats without inducing anxiety-like behaviors.

Conclusions:

  • M8OI's cytotoxicity in neuroblastoma cells is linked to mitochondrial dysfunction.
  • Observed neurobehavioral changes in rats occurred at brain concentrations below those predicted for neural cell death.
  • Caution is advised when comparing acute in vitro and chronic in vivo outcomes.

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