Research study · JAMA Network Open · 2023
Assessment of Orally Administered Δ9-Tetrahydrocannabinol When Coadministered With Cannabidiol on Δ9-Tetrahydrocannabinol Pharmacokinetics and Pharmacodynamics in Healthy Adults: A Randomized Clinical Trial
Verified on PubMed Randomized controlled trial
A 2023 randomized controlled trial in JAMA Network Open tested tetrahydrocannabinol in adverse events. CBD-dominant cannabis extract elicited stronger adverse effects than THC-dominant extract. Clinicians should be cautious when prescribing CBD-dominant cannabis products, as they may produce stronger adverse effects than expected.
In plain language
Study overview
Clinicians should be cautious when prescribing CBD-dominant cannabis products, as they may produce stronger adverse effects than expected. Understanding cannabinoid interactions is crucial for safe therapeutic use.
Findings
CBD-dominant cannabis extract elicited stronger adverse effects than THC-dominant extract. CBD may inhibit the metabolism of Δ9-THC, affecting its effects. Need for improved understanding of cannabinoid interactions for clinical decision-making.
The deeper readScientific analysis
IMPORTANCE Controlled clinical laboratory studies have shown that cannabidiol (CBD) can sometimes attenuate or exacerbate the effects of Δ9-tetrahydrocannabinol (Δ9-THC). No studies have evaluated differences in pharmacokinetics (PK) of Δ9-THC and pharmacodynamics (PD) between orally administered cannabis extracts that vary with respect to Δ9-THC and CBD concentrations. OBJECTIVE To compare the PK and PD of orally administered Δ9-THC-dominant and CBD-dominant cannabis extracts that contained the same Δ9-THC dose (20 mg). DESIGN, SETTING, AND PARTICIPANTS This randomized clinical trial was a within-participant, double-blind, crossover study conducted from January 2021 to March 2022 at the Johns Hopkins University Behavioral Pharmacology Research Unit, Baltimore, MD. Eighteen healthy adults completed 3 randomized outpatient experimental test sessions that were each separated by at least 1 week. INTERVENTIONS Brownies containing (1) no cannabis extract (ie, placebo); (2) Δ9-THC-dominant extract (20 mg Δ9-THC with no CBD); and (3) CBD-dominant extract (20 mg Δ9-THC + 640 mg CBD) were administered to participants 30 minutes prior to administering a cytochrome P450 (CYP) probe drug cocktail, which consisted of 100 mg caffeine, 20 mg omeprazole, 25 mg losartan, 30 mg dextromethorphan, and 2 mg midazolam. MAIN OUTCOMES AND MEASURES Change-from-baseline plasma concentrations for Δ9-THC or Δ9-THC metabolites and scores for subjective drug effects, cognitive and psychomotor performance, and vital signs. The area under the plasma vs concentration vs time curve (AUC) and maximum plasma concentration (Cmax) were determined. RESULTS The participant cohort of 18 adults included 11 males (61.1%) and 7 females (38.9%) with a mean (SD) age of 30 (7) years who had not used cannabis for at least 30 days prior to initiation of the study (mean [SD] day since last cannabis use, 86 [66] days). The CYP cocktail + placebo brownie and the CYP cocktail did not affect any PD assessments. Relative to CYP cocktail + Δ9-THC, CYP cocktail + Δ9-THC + CBD produced a higher Cmax and area under the plasma concentration vs time curve for Δ9-THC, 11-OH-Δ9-THC, and Δ9-THC-COOH. The CYP cocktail + Δ9-THC + CBD increased self-reported anxiety, sedation, and memory difficulty, increased heart rate, and produced a more pronounced impairment of cognitive and psychomotor performance compared with both CYP cocktail + Δ9-THC and CYP cocktail + placebo. CONCLUSIONS AND RELEVANCE In this randomized clinical trial of oral Δ9-THC and CBD, stronger adverse effects were elicited from a CBD-dominant cannabis extract compared with a Δ9-THC-dominant cannabis extract at the same Δ9-THC dose, which contradicts common claims that CBD attenuates the adverse effects of Δ9-THC. CBD inhibition of Δ9-THC and 11-OH-Δ9-THC metabolism is the likely mechanism for the differences observed. An improved understanding of cannabinoid-cannabinoid and cannabinoid-drug interactions are needed to inform clinical and regulatory decision-making regarding the therapeutic and nontherapeutic use of cannabis products.
The paper
Citation
Zamarripa CA, Spindle TR, Surujunarain R, Weerts EM, Bansal S, Unadkat JD, et al. Assessment of Orally Administered Δ9-Tetrahydrocannabinol When Coadministered With Cannabidiol on Δ9-Tetrahydrocannabinol Pharmacokinetics and Pharmacodynamics in Healthy Adults: A Randomized Clinical Trial. JAMA Network Open (2023). PubMed 36780161 · DOI
Limitations the authors noted
Single dose of THC (20 mg) and CBD (640 mg) evaluated without a CBD-only control condition. Outcomes assessed in the context of an oral CYP probe drug cocktail, which could theoretically influence behavioral outcomes. Sample size was not powered to detect potential sex differences.
In practice
Why this matters
Clinicians should be cautious when prescribing CBD-dominant cannabis products, as they may produce stronger adverse effects than expected.
Browse related research
Condition: Adverse events Condition: Anxiety Condition: Cannabis use Topic: Cannabis Topic: CBD Topic: Hallucinogens
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Reviewed by Dr. Caplan on October 9, 2026.
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