Oral exposure to M8OI in rats suppressed motor activity without anxious behaviours at brain concentrations at least 100-fold lower than those affecting in vitro cell viability.
Does M8OI exposure cause neurotoxic and neurobehavioural effects in rats and SH-SY5Y cells?
Chronic oral exposure to the ionic liquid M8OI in rats suppresses motor activity at brain concentrations significantly lower than those causing acute cytotoxicity in vitro.
M8OI is a cytotoxic methylimidazolium ionic liquid solvent through its binding to the ubiquinone binding site on complex I of the mitochondrial electron transport chain. Given the overlap in terms of toxic mechanism of action with the pesticide rotenone, the potential neurotoxic effects of M8OI were examined. In vitro, cytotoxicity and mitochondrial function were assessed in SH-SY5Y cells by measuring MTT reduction and oxygen consumption/extracellular acidification using a Seahorse analyser. SH-SY5Y cells were sensitised to M8OI toxicity by replacing medium glucose with galactose. Glucose protected the cells from M8OI toxicity, whereas galactose showed no clear dose–response protection. M8OI induced a dose-dependent reduction in oxygen consumption rate with a compensatory increase in extracellular acidification rate, consistent with inhibition of mitochondrial oxidative phosphorylation and a shift toward glycolysis. In vivo, rats were orally exposed via drinking water for 20 weeks and assessed using behavioural tests. In addition, the concentrations of M8OI and its metabolites were quantified by LC–MS in rat brain and other tissues. In rats, M8OI concentrations were ~30-fold higher in kidney than brain, and brain levels were at least 100-fold lower than the concentrations that affected SH-SY5Y cell viability in vitro. However, based on open field tests, M8OI exposure suppressed motor activity without any anxious behaviours. The cytotoxicity of M8OI in SH-SY5Y neuroblastoma cells was associated with metabolic mitochondrial dysfunction. However, the neurobehavioural changes observed in orally exposed rats occurred at significantly lower brain concentrations than would be predicted to lead to neural cell death. Nevertheless, direct comparisons between acute in vitro exposures and chronic in vivo outcomes should be interpreted cautiously.
Abdelghany et al. (Wed,) reported a other. M8OI (methylimidazolium ionic liquid) was evaluated on Neurobehavioural changes (motor activity and anxious behaviours) and cytotoxicity. Oral exposure to M8OI in rats suppressed motor activity without anxious behaviours at brain concentrations at least 100-fold lower than those affecting in vitro cell viability.