Study register · detail
Mixed
GRADE
Moderate
33 citations
Samplen = 28 Pat.
Durationtwo measurement time points at…
ControlMatched placebo
EndpointStriatal functional…
Blindingdoppelblind
DesignRCT
Cannabinoidcbd
Max. dose600.0 mg
Routeoral
Key finding
In individuals with ASD, CBDV reduced striatal hyperconnectivity to neurotypical levels, but it is unclear whether this is associated with symptom improvement.
Summary
Pilot RCT in autism spectrum disorder (n=28, 13 ASD, 15 neurotypical), double-blind, placebo-controlled, crossover design. 600 mg cannabidivarin (CBDV) vs. placebo. CBDV reduced atypical striatal-frontal hyperconnectivity to neurotypical levels (fMRI resting-state). ASD group showed lower FC between ventral striatum and frontal/pericentral regions as well as higher intra-striatal FC vs. controls.
P
PopulationAdult men with and without autism spectrum disorder (ASD), n=28 (13 ASD, 15 neurotypical)
I
InterventionCannabidivarin (CBDV) 600 mg oral, single dose
C
ControlMatched placebo (double-blind, crossover)
O
OutcomeCBDV reduced elevated intrastriatal FC and putamenal FC with temporal regions in the ASD group to neurotypical levels
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
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Abstract
Background: Autism spectrum disorder (ASD) has a high cost to affected individuals and society, but treatments for core symptoms are lacking. To expand intervention options, it is crucial to gain a better understanding of potential treatment targets, and their engagement, in the brain. For instance, the striatum (caudate, putamen, and nucleus accumbens) plays a central role during development and its (atypical) functional connectivity (FC) may contribute to multiple ASD symptoms. We have previously shown, in the adult autistic and neurotypical brain, the non-intoxicating cannabinoid cannabidivarin (CBDV) alters the balance of striatal 'excitatory-inhibitory' metabolites, which help regulate FC, but the effects of CBDV on (atypical) striatal FC are unknown.
Methods: To examine this in a small pilot study, we acquired resting state functional magnetic resonance imaging data from 28 men (15 neurotypicals, 13 ASD) on two occasions in a repeated-measures, double-blind, placebo-controlled study. We then used a seed-based approach to (1) compare striatal FC between groups and (2) examine the effect of pharmacological probing (600 mg CBDV/matched placebo) on atypical striatal FC in ASD. Visits were separated by at least 13 days to allow for drug washout.
Results: Compared to the neurotypicals, ASD individuals had lower FC between the ventral striatum and frontal and pericentral regions (which have been associated with emotion, motor, and vision processing). Further, they had higher intra-striatal FC and higher putamenal FC with temporal regions involved in speech and language. In ASD, CBDV reduced hyperconnectivity to the neurotypical level.
Limitations: Our findings should be considered in light of several methodological aspects, in particular our participant group (restricted to male adults), which limits the generalizability of our findings to the wider and heterogeneous ASD population.
Conclusion: In conclusion, here we show atypical striatal FC with regions commonly associated with ASD symptoms. We further provide preliminary proof of concept that, in the adult autistic brain, acute CBDV administration can modulate atypical striatal circuitry towards neurotypical function. Future studies are required to determine whether modulation of striatal FC is associated with a change in ASD symptoms.
Trial Registration: clinicaltrials.gov, Identifier: NCT03537950. Registered May 25th, 2018-Retrospectively registered, https://clinicaltrials.gov/ct2/show/NCT03537950?term=NCT03537950&draw=2&rank=1 .
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