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Cannabidiol prevents haloperidol-induced vacuos chewing movements and inflammatory changes in mice via PPARγ
Andreza B Sonego1, Douglas S Prado2, Gabriel T Vale3
1Department of Pharmacology, Medical School of Ribeirão Preto, University of São Paulo, Brazil; Sorbonne Universités UPMC UMR S 1127, INSERM U1127, CNRS UMR 7225, Institut du Cerveau et de la Moelle Epinière, Paris, France.
Abstract:
The chronic use of drugs that reduce the dopaminergic neurotransmission can cause a hyperkinetic movement disorder called tardive dyskinesia (TD). The pathophysiology of this disorder is not entirely understood but could involve oxidative and neuroinflammatory mechanisms. Cannabidiol (CBD), the major non-psychotomimetic compound present in Cannabis sativa plant, could be a possible therapeutic alternative for TD. This phytocannabinoid shows antioxidant, anti-inflammatory and antipsychotic properties and decreases the acute motor effects of classical antipsychotics. The present study investigated if CBD would attenuate orofacial dyskinesia, oxidative stress and inflammatory changes induced by chronic administration of haloperidol in mice. Furthermore, we verified in vivo and in vitro (in primary microglial culture) whether these effects would be mediated by PPARγ receptors. The results showed that the male Swiss mice treated daily for 21 days with haloperidol develop orofacial dyskinesia. Daily CBD administration before each haloperidol injection prevented this effect. Mice treated with haloperidol showed an increase in microglial activation and inflammatory mediators in the striatum. These changes were also reduced by CBD. On the other hand, the levels of the anti-inflammatory cytokine IL-10 increased in the striatum of animals that received CBD and haloperidol. Regarding oxidative stress, haloperidol induced lipid peroxidation and reduced catalase activity. This latter effect was attenuated by CBD. The combination of CBD and haloperidol also increased PGC-1α mRNA expression, a co-activator of PPARγ receptors. Pretreatment with the PPARγ antagonist, GW9662, blocked the behavioural effect of CBD in our TD model. CBD also prevented LPS-stimulated microglial activation, an effect that was also antagonized by GW9662. In conclusion, our results suggest that CBD could prevent haloperidol-induced orofacial dyskinesia by activating PPARγ receptors and attenuating neuroinflammatory changes in the striatum.
Insights
Cannabidiol (CBD) may prevent tardive dyskinesia (TD) by reducing neuroinflammation and oxidative stress. This study shows CBD activates PPARγ receptors, offering a potential therapeutic strategy for TD.
Area of Science:
- Neuroscience
- Pharmacology
Background:
- Chronic use of dopaminergic drugs can lead to tardive dyskinesia (TD), a movement disorder potentially involving oxidative stress and neuroinflammation.
- Cannabidiol (CBD), a non-psychotomimetic compound from Cannabis sativa, exhibits antioxidant, anti-inflammatory, and antipsychotic properties.
Purpose of the Study:
- To investigate if CBD can attenuate haloperidol-induced orofacial dyskinesia, oxidative stress, and inflammation in mice.
- To determine if these effects are mediated by PPARγ receptors.
Main Methods:
- Daily administration of haloperidol to mice for 21 days to induce TD-like symptoms.
- Concurrent administration of CBD and assessment of orofacial movements, striatal microglial activation, inflammatory mediators, oxidative stress markers, and PPARγ receptor activity.
- In vitro studies using primary microglial cultures and in vivo experiments with a PPARγ antagonist (GW9662).
Main Results:
- Haloperidol induced orofacial dyskinesia, increased microglial activation, inflammatory mediators, and oxidative stress (lipid peroxidation, reduced catalase activity) in mice.
- CBD administration prevented these behavioral and biochemical changes, increasing IL-10 levels and partially restoring catalase activity.
- CBD's effects were blocked by the PPARγ antagonist GW9662, and CBD also inhibited LPS-stimulated microglial activation in vitro, an effect also antagonized by GW9662.
Conclusions:
- CBD prevents haloperidol-induced orofacial dyskinesia in mice.
- The therapeutic effects of CBD appear to be mediated through the activation of PPARγ receptors, leading to the attenuation of neuroinflammatory and oxidative stress pathways in the striatum.
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