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Modulation of effective connectivity during emotional processing by Δ9-tetrahydrocannabinol and cannabidiol

Paolo Fusar‐poli, Paul Allen, Sagnik Bhattacharyya, José Alexandre S. Crippa, Andrea Mechelli, Stefan Borgwardt, Rocío Martín‐Santos, Marc L. Seal, Colin O’Carrol, Zerrin Atakan, Antônio Waldo Zuardi, Philip Mcguire

The International Journal of Neuropsychopharmacology September 24, 2009 DOI: 10.1017/s1461145709990617 (opens in new tab)

Study at a glance

AI-extracted from the abstract
Characteristics Randomized controlled trial Placebo-controlled Double-blind Peer reviewed
Sample size 15
Population Healthy subjects
Interventions Cannabidiol Delta 9-tetrahydrocannabinol
Dose 600 mg of cannabidiol (CBD) and 10 mg Delta 9-tetrahydrocannabinol (Delta 9-THC)
Topics Anxiety Cannabis CBD
Keywords Ventromedial prefrontal cortex Amygdala Anterior cingulate cortex Anxiolytic Cognition Cannabinoid
Citations 165
Key findings CBD, but not THC, disrupted forward connectivity between the amygdala and anterior cingulate cortex during the neural response to fearful faces.

Abstract

Cannabis sativa, the most widely used illicit drug, has profound effects on levels of anxiety in animals and humans. Although recent studies have helped provide a better understanding of the neurofunctional correlates of these effects, indicating the involvement of the amygdala and cingulate cortex, their reciprocal influence is still mostly unknown. In this study dynamic causal modelling (DCM) and Bayesian model selection (BMS) were used to explore the effects of pure compounds of C. sativa [600 mg of cannabidiol (CBD) and 10 mg Delta 9-tetrahydrocannabinol (Delta 9-THC)] on prefrontal-subcortical effective connectivity in 15 healthy subjects who underwent a double-blind randomized, placebo-controlled fMRI paradigm while viewing faces which elicited different levels of anxiety. In the placebo condition, BMS identified a model with driving inputs entering via the anterior cingulate and forward intrinsic connectivity between the amygdala and the anterior cingulate as the best fit. CBD but not Delta 9-THC disrupted forward connectivity between these regions during the neural response to fearful faces. This is the first study to show that the disruption of prefrontal-subocritical connectivity by CBD may represent neurophysiological correlates of its anxiolytic properties.

In the evidence

This study is part of the evidence base for 2 syntheses in the library. Here is how each one recorded it.

  • CBD, but not THC, disrupted forward connectivity between the amygdala and anterior cingulate during fearful face processing, proposed as a correlate of its anxiolytic properties.

    Synthesized

  • CBD, but not THC, disrupted forward connectivity between the amygdala and anterior cingulate cortex during the neural response to fearful faces.

    Synthesized

Comparable studies

Other randomized controlled trials on cannabis for anxiety, most cited first.

Study Year Design Participants
Distinct Effects of Δ9-Tetrahydrocannabinol and Cannabidiol on Neural Activation During Emotional Processing Healthy, English-native, right-handed men who had used cannabis 15 times or less in... 2009 Double-blind, randomized, placebo-controlled crossover trial n = 15
Modulation of Mediotemporal and Ventrostriatal Function in Humans by Δ9-Tetrahydrocannabinol Healthy, native English-speaking, right-handed men of white race/ethnicity who had used... 2009 Randomized controlled trial n = 15
Cannabis containing equivalent concentrations of delta-9-tetrahydrocannabinol (THC) and cannabidiol (CBD) induces less state anxiety than THC-dominant cannabis Healthy recreational cannabis users 2022 Randomized controlled trial, within-subjects n = 26
Psychedelic symptoms of cannabis and cocaine use as a function of trait impulsivity Regular drug users 2015 Three-way crossover study n = 122
Effects of Cannabinoids on Emotional States and Alcohol Use Among Underrepresented Groups: Moderation by Perceived Discrimination. Participants who identify with a racial, ethnic, gender, or sexual identity that is... 2025 Randomized controlled trial n = 172

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