Autismus
Studienlage · Detail RCT · Autismus · 2019

The effect of cannabidiol (CBD) on low-frequency activity and functional connectivity in the brain of adults with and without autism spectrum disorder (ASD).

Unklar GRADE Moderat 104 Zitate
Stichproben = 34 Pat.
DauerEinzelne Dosis
KontrolleMatched Placebo
EndpunktfALFF
Verblindungdoppelblind
DesignRCT
Cannabinoidcbd
Max. Dosis600.0 mg
Applikationoral
Kernaussage

CBD erhöhte signifikant die fALFF in Kleinhirnvermis und rechtem Fusiformgyrus, primär in der ASD-Gruppe, ohne klare klinische Verhaltensauswirkungen berichtet.

Zusammenfassung

Pharmako-fMRI-Studie n=34 erwachsene Männer (50% mit ASD); einmalige orale CBD-Gabe 600 mg vs. Placebo. CBD erhöhte fALFF im cerebellären Vermis und rechten Gyrus fusiformis signifikant, primär getrieben durch ASD-Gruppe (keine signifikante Änderung in Kontrollen). CBD veränderte innerhalb der ASD-Gruppe vermal-FC mit subkortikalen und kortikalen Zielregionen signifikant.

P
PopulationErwachsene Männer mit und ohne Autismus-Spektrum-Störung (ASD), n=34 (je 17 mit/ohne ASD)
I
InterventionOrales CBD 600 mg, Einzeldosis, doppelblind, Cross-over
C
KontrolleMatched Placebo (oral, Einzeldosis)
O
OutcomeCBD erhöhte signifikant fALFF im Kleinhirnvermis und rechten Gyrus fusiformis; Effekt primär in der ASD-Gruppe getrieben; veränderte funktionelle Konnektivität des Vermis mit striatalen und kortikalen Zielregionen nur in der ASD-Gruppe
Vertrauen in die Evidenz
Moderat

Dritte von vier GRADE-Stufen, die Effektschätzung ist wahrscheinlich verlässlich.

Herabgestuft wegen
Ungenauigkeit
Qualitätsprofil
Größe
Verblindung Doppelblind
Effektstärke
Zitate / Jahr
Autoren
Pretzsch CM, Voinescu B, Mendez MA, Wichers R, Ajram L, Ivin G, Heasman M, Williams S, Murphy DG, Daly E
Teilen
Abstract
Background: The potential benefits of cannabis and its major non-intoxicating component cannabidiol (CBD) are attracting attention, including as a potential treatment in neurodevelopmental disorders such as autism spectrum disorder (ASD). However, the neural action of CBD, and its relevance to ASD, remains unclear. We and others have previously shown that response to drug challenge can be measured using functional magnetic resonance imaging (fMRI), but that pharmacological responsivity is atypical in Asd. Aims: We hypothesized that there would be a (different) fMRI response to CBD in Asd. Methods: To test this, task-free fMRI was acquired in 34 healthy men (half with ASD) following oral administration of 600 mg CBD or matched placebo (random order; double-blind administration). The 'fractional amplitude of low-frequency fluctuations' (fALFF) was measured across the whole brain, and, where CBD significantly altered fALFF, we tested if functional connectivity (FC) of those regions was also affected by Cbd. Results: CBD significantly increased fALFF in the cerebellar vermis and the right fusiform gyrus. However, post-hoc within-group analyses revealed that this effect was primarily driven by the ASD group, with no significant change in controls. Within the ASD group only, CBD also significantly altered vermal FC with several of its subcortical (striatal) and cortical targets, but did not affect fusiform FC with other regions in either group. Conclusion: Our results suggest that, especially in ASD, CBD alters regional fALFF and FC in/between regions consistently implicated in ASD. Future studies should examine if this affects the complex behaviours these regions modulate.

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