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Shelan Ofori

7 papers in the library · 78 citations · publishing 2023-2025

Papers

The acute effects of cannabis with and without cannabidiol in adults and adolescents: A randomised, double‐blind, placebo‐controlled, crossover experiment

Addiction February 8, 2023 Will Lawn, Katie Trinci, Claire Mokrysz et al. 36 citations

Adolescent cannabis users are neither more resilient nor more vulnerable than adult cannabis users to the acute psychotomimetic, verbal memory-impairing, or subjective effects of cannabis. In a randomized, double-blind, placebo-controlled crossover experiment with 24 adolescents (16-17 years old) and 24 adults (26-29 years old) who used cannabis 0.5-3 days per week, vaporized THC (8 mg for a 75 kg person) and THC plus CBD (24 mg) both significantly increased subjective drug effect, impaired verbal episodic memory, and increased psychotomimetic effects compared to placebo. There was no evidence that adolescents differed from adults in their responses, and CBD did not modulate the acute effects of THC.

Acute effects of different types of cannabis on young adult and adolescent resting-state brain networks

Neuropsychopharmacology May 28, 2024 Natalie Ertl, Tom P. Freeman, Claire Mokrysz et al. 19 citations

Cannabis use disrupts resting-state functional connectivity in key brain networks—default mode, executive control, salience, hippocampal, and limbic striatal—similarly in adolescents (16–17 years) and young adults (26–29 years). Cannabidiol (CBD) did not counteract the effects of delta-9-tetrahydrocannabinol (THC) and, in some cases, further reduced connectivity both within networks and across the whole brain. These findings challenge the assumption that CBD makes cannabis safer and indicate that the adolescent brain is not more vulnerable to cannabis-induced connectivity disruptions than the adult brain.

Associations between regular cannabis use and brain resting-state functional connectivity in adolescents and adults

Journal of Psychopharmacology July 29, 2023 Natalie Ertl, Will Lawn, Claire Mokrysz et al. 17 citations

Regular cannabis use is associated with localized increases in connectivity of the executive control network (ECN), which may reflect adaptive or compensatory changes in response to regular intoxication. Adolescents generally showed weaker connectivity than adults across multiple brain networks, consistent with normal developmental effects. However, there were no significant interactions between age group and cannabis user group, meaning the connectivity changes linked to cannabis use did not differ between adolescents and adults. No associations were found between cannabis use frequency and any connectivity measures.

The acute effects of cannabis, with and without cannabidiol, on attentional bias to cannabis related cues: a randomised, double-blind, placebo-controlled, cross-over study

Psychopharmacology February 28, 2024 Daniel L. Hall, Will Lawn, Shelan Ofori et al. 5 citations

Acute intoxication with vaporized THC eliminated attentional bias away from cannabis-related cues in both adolescents and adults who used cannabis 0.5–3 days per week. In a randomized, double-blind, placebo-controlled crossover study with 48 participants (24 adolescents aged 16–17 and 24 adults aged 26–29), a weight-adjusted dose of 8 mg THC eliminated the bias, while adding 24 mg CBD did not alter this effect. There was no significant difference in response between age groups. The findings suggest that acute THC intoxication shifts attentional processing of cannabis cues, but CBD does not moderate this effect.

Receptor-enriched analysis of functional connectivity (REACT) for understanding cannabinoid neuropsychopharmacology

bioRxiv (Cold Spring Harbor Laboratory) June 5, 2025 Ekaterina Shatalina, Natalie Ertl, Kat Petrilli et al. 1 citation preprint

Inhaling cannabis with THC alone or THC plus CBD reduces resting-state functional connectivity in brain networks that are rich in CB1 and CB2 cannabinoid receptors. Co-administering CBD with THC produced more widespread reductions than THC alone, affecting regions involved in cognition and emotion such as the prefrontal cortex, cingulate cortex, insula, hippocampus, amygdala, and putamen. Higher THC levels in the blood were linked to greater connectivity decreases when CBD was also present. Subjective drug effects correlated with connectivity changes in a region-specific way. The findings suggest that CBD may enhance rather than dampen THC's effects on brain connectivity, contrary to some earlier expectations.

Understanding Neuroplasticity Induced by Tryptamines (UNITy): Understanding Neuroplasticity Induced by Tryptamines: Rewiring Maladaptive Memories in Hazardous Drinking with Memory Reactivation and Dimethyltryptamine (DMT)

Open Science Framework October 20, 2025 Natalia Fernandez-Vinson, Roger Atkins, Marcus Glennon et al.

This registered clinical study investigates whether N,N-dimethyltryptamine (DMT), alone or combined with reactivating alcohol-related memories, can produce lasting changes in the brain, cognition, and drinking behavior in people with mild alcohol use disorder who are hazardous drinkers but not seeking treatment. Up to 120 participants will be assigned to one of four groups: alcohol memory retrieval plus DMT, alcohol memory retrieval plus placebo, control memory retrieval plus DMT, or control memory retrieval plus placebo. Drinking levels will be measured over three lab sessions and a nine-month follow-up using timeline follow-back and blood tests.

THE EFFECTS OF ACUTE CANNABIS WITH AND WITHOUT CANNABIDIOL ON NEURAL REWARD ANTICIPATION IN ADULTS AND ADOLESCENTS

The International Journal of Neuropsychopharmacology February 1, 2025 Martine Skumlien, Tom P. Freeman, Daniel L. Hall et al.

In weekly cannabis users, cannabis suppresses the brain's anticipatory reward response to money, and cannabidiol (CBD) does not moderate this effect. The adolescent reward circuitry is not differentially sensitive to the acute effects of cannabis on reward anticipation. This double-blind, placebo-controlled, crossover study with 23 adults (26-29 years) and 24 adolescents (16-17 years) used functional magnetic resonance imaging (fMRI) to measure brain activity during a monetary reward anticipation task after inhaling cannabis with tetrahydrocannabinol (THC), THC plus CBD, or placebo. THC acutely reduced reward anticipation activity in the ventral striatum and right insula compared with placebo. THC plus CBD also reduced activity in these regions. The effects were the same in adolescents and adults.