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Cannabidiol Increases Psychotropic Effects and Plasma Concentrations of Δ9-Tetrahydrocannabinol Without Improving Its Analgesic Properties.

Andriy A Gorbenko, Jules A A C Heuberger, Linda E Klumpers, Marieke L De Kam, Pamela K Strugala, Saco J De Visser, Geert J Groeneveld

Clinical pharmacology and therapeutics November 1, 2024 DOI: 10.1002/cpt.3381 via PubMed

Summary

AI-generated from the abstract

A clinical trial tested whether cannabidiol (CBD) can reduce the adverse effects of tetrahydrocannabinol (THC) and improve its tolerability as an analgesic. Healthy volunteers received THC alone or with different doses of CBD. Contrary to expectations, the highest CBD dose (450 mg) significantly increased THC's subjective, psychomotor, cognitive, and autonomous effects—for example, feeling high increased by 60.5%—and did not enhance pain relief. Lower CBD doses had no significant effect on THC's effects. CBD also increased blood levels of THC and its active metabolite. The findings do not support using CBD to reduce oral THC's adverse effects or to improve its analgesic properties.

Study at a glance

Characteristics Randomized, double-blind, placebo-controlled, five-way cross-over trial Peer reviewed
Sample size 37
Population Healthy volunteers
Interventions THC 9 mg with placebo CBD double-placebo
Dose THC 9 mg; CBD 10, 30, or 450 mg
Citations 17
Key finding Co-administration of 450 mg CBD significantly increased the psychoactive effects of THC and did not enhance THC analgesia, contrary to the hypothesis that CBD would reduce adverse effects.

Abstract

Cannabidiol (CBD), the main non-intoxicating compound in cannabis, has been hypothesized to reduce the adverse effects of Δ9-tetrahydrocannabinol (THC), the main psychoactive and analgesic component of cannabis. This clinical trial investigated the hypothesis that CBD counteracts the adverse effects of THC and thereby potentially improves the tolerability of cannabis as an analgesic. A randomized, double-blind, placebo-controlled, five-way cross-over trial was performed in 37 healthy volunteers. On each visit, a double-placebo, THC 9 mg with placebo CBD, or THC 9 mg with 10, 30, or 450 mg CBD was administered orally. Psychoactive and analgesic effects were quantified using standardized test batteries. Pharmacokinetic sampling was performed. Data were analyzed using mixed-effects model. Co-administration of 450 mg CBD did not reduce, but instead significantly increased subjective, psychomotor, cognitive, and autonomous effects of THC (e.g., VAS "Feeling High" by 60.5% (95% CI: 12.7%, 128.5%, P < 0.01)), whereas THC effects with 10 and 30 mg CBD were not significantly different from THC alone. CBD did not significantly enhance THC analgesia at any dose level. Administration of 450 mg CBD significantly increased AUClast of THC (AUClast ratio: 2.18, 95% CI: 1.54, 3.08, P < 0.0001) and 11-OH-THC (AUClast ratio: 6.24, 95% CI: 4.27, 9.12, P < 0.0001) compared with THC alone, and 30 mg CBD significantly increased AUClast of 11-OH-THC (AUClast ratio: 1.89, 95% CI: 1.30, 2.77, P = 0.0013), and of THC (AUClast ratio: 1.44, 95% CI: 1.01, 2.04, P = 0.0446). Present findings do not support the use of CBD to reduce adverse effects of oral THC or enhance THC analgesia.

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