Autism Spectrum Disorder
Study register · detail RCT · Autism Spectrum Disorder · 2019

Effects of cannabidiol on brain excitation and inhibition systems; a randomised placebo-controlled single dose trial during magnetic resonance spectroscopy in adults with and without autism spectrum disorder.

Mixed GRADE Moderate 153 citations
Samplen = 34 Pat.
DurationSingle dose, measurements 2…
ControlPlacebo
EndpointMRS glutamate/GABA
Blindingdoppelblind
DesignRCT
Cannabinoidcbd
Max. dose600.0 mg
Routeoral
Key finding

CBD increased subcortical Glx, reduced cortical Glx; increased GABA+ in controls but reduced GABA+ in ASD, with a significant group difference in the DMPFC.

Summary

n=34 (17 ASD, 17 controls), single-dose 600 mg CBD vs. placebo; CBD increased subcortical Glx, decreased cortical Glx (both groups). Group×region interaction for GABA+: CBD increased prefrontal GABA+ in controls, decreased it in ASD (group difference significant, p-value not reported).

P
PopulationAdult men with and without autism spectrum disorder (ASD), n=34 (17 neurotypical, 17 ASD)
I
InterventionSingle oral dose of CBD 600 mg
C
ControlPlacebo (oral, single dose, crossover)
O
OutcomeCBD increased subcortical Glx, decreased cortical Glx; GABA+ increased in controls, decreased in ASD; group difference in GABA+ effect in the DMPFC significant
Confidence in the evidence
Moderate

The third of four GRADE levels, the effect estimate is probably reliable.

Downgraded for
Imprecision
Quality profile
Sample size
Blinding Double-blind
Effect size Mixed
Citations / year
Authors
Pretzsch CM, Freyberg J, Voinescu B, Lythgoe D, Horder J, Mendez MA, Wichers R, Ajram L, Ivin G, Heasman M
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Abstract
There is increasing interest in the use of cannabis and its major non-intoxicating component cannabidiol (CBD) as a treatment for mental health and neurodevelopmental disorders, such as autism spectrum disorder (ASD). However, before launching large-scale clinical trials, a better understanding of the effects of CBD on brain would be desirable. Preclinical evidence suggests that one aspect of the polypharmacy of CBD is that it modulates brain excitatory glutamate and inhibitory gamma-aminobutyric acid (GABA) levels, including in brain regions linked to ASD, such as the basal ganglia (BG) and the dorsomedial prefrontal cortex (DMPFC). However, differences in glutamate and GABA pathways in ASD mean that the response to CBD in people with and without ASD may be not be the same. To test whether CBD 'shifts' glutamate and GABA levels; and to examine potential differences in this response in ASD, we used magnetic resonance spectroscopy (MRS) to measure glutamate (Glx = glutamate + glutamine) and GABA+ (GABA + macromolecules) levels in 34 healthy men (17 neurotypicals, 17 ASD). Data acquisition commenced 2 h (peak plasma levels) after a single oral dose of 600 mg CBD or placebo. Test sessions were at least 13 days apart. Across groups, CBD increased subcortical, but decreased cortical, Glx. Across regions, CBD increased GABA+ in controls, but decreased GABA+ in ASD; the group difference in change in GABA + in the DMPFC was significant. Thus, CBD modulates glutamate-GABA systems, but prefrontal-GABA systems respond differently in ASD. Our results do not speak to the efficacy of CBD. Future studies should examine the effects of chronic administration on brain and behaviour, and whether acute brain changes predict longer-term response.

The impediment to action advances action. — Marcus Aurelius