Sci Rep
October 13, 2017
Robin L Carhart-Harris, Leor Roseman, Mark Bolstridge et al.
590 citations
In patients with treatment-resistant depression, a single dose of psilocybin combined with psychological support reduced depressive symptoms and altered brain activity and connectivity. Functional MRI scans before and after treatment showed decreased blood flow in the temporal cortex, including the amygdala, and increased resting-state functional connectivity within the default-mode network. Reduced amygdala blood flow correlated with fewer depressive symptoms. Changes in connectivity between the ventromedial prefrontal cortex and inferior lateral parietal cortex, as well as between the parahippocampus and prefrontal cortex, predicted treatment response at five weeks. These brain changes differ from the drug's acute effects and suggest a 'reset' of neural circuits.
Neuropharmacology
December 27, 2017
Leor Roseman, Lysia Demetriou, Matthew B. Wall et al.
239 citations
In an open-label study, 20 individuals with moderate to severe, treatment-resistant depression received two doses of psilocybin with psychological support. Nineteen completed fMRI scans before and after treatment. Depressive symptoms improved rapidly and enduringly. Right amygdala responses to fearful and happy faces increased after psilocybin, and increased responses to fearful versus neutral faces predicted clinical improvement at one week. This contrasts with SSRIs, which typically reduce amygdala responses, suggesting psilocybin may help patients confront and work through emotions rather than dampen them. The authors propose psilocybin with psychological support revives emotional responsiveness in depression.
Journal of Psychopharmacology
January 16, 2020
Lea J. Mertens, Matthew B. Wall, Leor Roseman et al.
211 citations
After a single 25 mg dose of psilocybin, patients with treatment-resistant depression showed decreased functional connectivity between the ventromedial prefrontal cortex and the right amygdala while viewing faces, particularly fearful and neutral ones. This decrease was linked to lower rumination levels one week later. Increased connectivity between these regions and occipital-parietal cortices also emerged. The findings suggest psilocybin therapy may revive emotional responsiveness at both neural and psychological levels, offering a potential treatment mechanism. Placebo-controlled studies are needed to confirm these results.
Journal of Psychopharmacology
April 23, 2019
Matthew B. Wall, Rebecca Pope, Tom P. Freeman et al.
89 citations
Two strains of cannabis—one containing only THC (8 mg) and another containing THC plus CBD (8 mg THC + 10 mg CBD)—were compared with placebo in seventeen healthy, experienced but non-regular cannabis users. Using resting-state fMRI, both strains reduced functional connectivity in the default mode and salience networks relative to placebo, but with distinct spatial patterns. The THC-only strain specifically disrupted the posterior cingulate cortex within the default mode network, and this disruption correlated with subjective feelings of being 'stoned' and 'high'. The THC-plus-CBD strain produced less disruption of the salience network, suggesting CBD may buffer THC's effects on salience processing, which could underlie its potential therapeutic role in disorders like psychosis and addiction.
Journal of Psychopharmacology
May 20, 2022
Matthew B. Wall, Tom P. Freeman, Chandni Hindocha et al.
21 citations
THC strongly disrupts connectivity between the striatum and cortex, but co-administering CBD mitigates this effect in the limbic striatum network. In one study, inhaled cannabis with 8 mg THC or 8 mg THC plus 10 mg CBD disrupted associative and sensorimotor networks, while THC alone also disrupted the limbic striatum network. In a second study, oral 600 mg CBD increased connectivity in the associative network and caused minor disruptions in limbic and sensorimotor networks. The insula emerges as a key region affected by cannabinoid-induced changes in functional connectivity, with implications for understanding cannabis-related disorders and developing cannabinoid therapeutics.
American Journal of Psychiatry
May 7, 2025
Matthew B Wall, Lysia Demetriou, Bruna Giribaldi et al.
16 citations
Psilocybin therapy greatly improved depressive symptoms but had only a small effect on how the brain responds to emotional stimuli. This contrasts with SSRIs, which often reduce emotional responsiveness alongside their antidepressant action. The findings suggest that psychedelic therapy may work through different neural mechanisms than conventional antidepressants.
medRxiv
June 3, 2023
Matthew B. Wall, Lysia Demetriou, Bruna Giribaldi et al.
7 citations
preprint
Psilocybin therapy for major depressive disorder may work through a different brain mechanism than the SSRI escitalopram. In a trial comparing two groups—one receiving two 25 mg psilocybin doses plus daily placebo, the other receiving daily escitalopram plus two inactive 1 mg psilocybin doses—brain responses to emotional faces were measured with fMRI before and after six weeks of treatment. The escitalopram group showed significantly reduced brain activity in response to fear, happy, and neutral faces, including a specific reduction in amygdala response to fear faces. The psilocybin group showed no such reduction and even a slight increase in brain responsiveness, despite large improvements in depressive symptoms. Reduced emotional responsiveness may be a biomarker of SSRIs' antidepressant action not shared by psilocybin therapy.
bioRxiv (Cold Spring Harbor Laboratory)
November 21, 2020
Matthew B. Wall, Tom P. Freeman, Chandni Hindocha et al.
4 citations
preprint
Cannabidiol (CBD) and Δ9-tetrahydrocannabinol (THC) are two major cannabis constituents with contrasting actions: THC is psychoactive and addiction-promoting, while CBD may have opposite effects. In two placebo-controlled, double-blind studies, inhaled THC (8 mg) strongly disrupted functional connectivity in associative and sensorimotor striatal networks, and this disruption was selectively alleviated in the limbic striatum when co-administered with CBD (10 mg). Oral CBD (600 mg) alone increased connectivity in the associative network but caused minor decreases in limbic and sensorimotor networks. The insula emerged as a key region affected by cannabinoid-induced connectivity changes, with implications for cannabis-related disorders and cannabinoid therapeutics.