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

Effects of cannabidivarin (CBDV) on brain excitation and inhibition systems in adults with and without Autism Spectrum Disorder (ASD): a single dose trial during magnetic resonance spectroscopy.

Mixed GRADE Moderate 61 citations
Samplen = 34 Pat.
DurationSingle dose, measurements 2…
ControlPlacebo
EndpointGlx/GABA+
Blindingdoppelblind
DesignRCT
Cannabinoidcbd
Max. dose600.0 mg
Routeoral
Key finding

CBDV significantly increased glutamate (Glx) in the basal ganglia of both groups, though not uniformly; in the ASD group the Glx change correlated negatively with the baseline value. No significant effects on Glx in the DMPFC or on GABA+ in either region.

Summary

n=34 (17 ASD, 17 controls), single-dose 600 mg CBDV vs. placebo; CBDV increased Glx in the basal ganglia of both groups; in ASD the Glx shift correlated negatively with baseline Glx (r not reported). No significant effect on GABA+ or prefrontal Glx.

P
PopulationAdults with and without autism spectrum disorder (ASD), males only, n=34 (ASD n=17, typically developed n=17)
I
InterventionCBDV (cannabidivarin) 600 mg, single dose, oral
C
ControlPlacebo (crossover design)
O
OutcomeCBDV significantly increased Glx (glutamate+glutamine) in the left basal ganglion in both groups; no significant effect on Glx in the DMPFC or on GABA+ in either region; in the ASD group the Glx shift correlated negatively with baseline Glx (not in the control group)
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, Voinescu B, Lythgoe D, Horder J, Mendez MA, Wichers R, Ajram L, Ivin G, Heasman M, Edden RAE
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Abstract
Autism spectrum disorder (ASD) is a high cost neurodevelopmental condition; and there are currently no effective pharmacological treatments for its core symptoms. This has led some families and researchers to trial alternative remedies - including the non-intoxicating Cannabis sativa-derived compound cannabidivarin (CBDV). However, how CBDV affects the human brain is unknown. Previous (pre)clinical evidence suggests that CBDV may modulate brain excitatory-inhibitory systems, which are implicated in ASD. Hence, our main aim was to test, for the first time, if CBDV shifts glutamate and/or GABA metabolites - markers of the brain's primary excitatory and inhibitory system - in both the 'typical' and autistic brain. Our subsidiary aim was to determine whether, within ASD, brain responsivity to CBDV challenge is related to baseline biological phenotype. We tested this using a repeated-measures, double-blind, randomized-order, cross-over design. We used magnetic resonance spectroscopy (MRS) to compare glutamate (Glx = glutamate + glutamine) and GABA + (GABA + macromolecules) levels following placebo (baseline) and 600 mg CBDV in 34 healthy men with (n = 17) and without (n = 17) ASD. Data acquisition from regions previously reliably linked to ASD (dorsomedial prefrontal cortex, DMPFC; left basal ganglia, BG) commenced 2 h (peak plasma levels) after placebo/CBDV administration. Where CBDV significantly shifted metabolite levels, we examined the relationship of this change with baseline metabolite levels. Test sessions were at least 13 days apart to ensure CBDV wash-out. CBDV significantly increased Glx in the BG of both groups. However, this impact was not uniform across individuals. In the ASD group, and not in the typically developing controls, the 'shift' in Glx correlated negatively with baseline Glx concentration. In contrast, CBDV had no significant impact on Glx in the DMPFC, or on GABA+ in either voxel in either group. Our findings suggest that, as measured by MRS, CBDV modulates the glutamate-GABA system in the BG but not in frontal regions. Moreover, there is individual variation in response depending on baseline biochemistry. Future studies should examine the effect of CBDV on behaviour and if the response to an acute dose of CBDV could predict a potential clinical treatment response in ASD.

The impediment to action advances action. — Marcus Aurelius