CBD-dominant cannabis may lessen short-term cognitive effects

Effects of delta-9 tetrahydrocannabinol and cannabidiol on cognitive outcomes following acute use of cannabis for chronic pain.

Psychopharmacology • • Highly Relevant
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AI Summary

This study examined whether acute use of edible cannabis for chronic, non-specific low back pain affected cognition. The 183 participants chose one of three formulations: CBD-dominant, THC-dominant, or a combination of CBD and THC. Cognitive testing took place before use and 1 and 2 hours afterward, covering working memory, verbal learning, executive function, episodic memory, and processing speed.

One hour after use, participants using CBD-dominant cannabis performed better on working memory than those using the combined CBD + THC product. Their verbal-learning scores were also more stable than those of participants using either THC or the combined product. However, the abstract reports no significant effects on executive function, episodic memory, or processing speed. These findings suggest that the cognitive impact of cannabis for chronic pain may vary by cannabinoid composition, but the study’s self-selected groups do not establish that CBD directly causes better cognitive outcomes.

💡 Key Findings

1
Participants using CBD-dominant cannabis outperformed those using CBD + THC in working memory 1 hour after use.
Good
65%
2
The CBD-dominant group showed more stable verbal-learning scores after use than the THC and CBD + THC groups.
Good
65%
3
The study found no significant effects on executive function, episodic memory, or processing speed following acute cannabis use.
Good
70%
4
The relationship between older age and better working memory in the CBD group became progressively weaker after cannabis use.
Moderate
55%

📄 Original Abstract

An estimated two-thirds of medical cannabis users in the United States are motivated by chronic pain, but clinical guidance remains guarded as to whether the potential benefit of cannabinoids for pain outweighs potential risks, such as effects on cognition. In a study where participants experienced benefits of cannabinoids for pain and tension, we evaluated cannabis effects on executive function, processing speed, memory, and verbal learning following acute use for chronic, non-specific low back pain. Participants were in one of three self-selected edible cannabis groups: a) CBD-dominant, b) THC-dominant, or c) a mixed ratio of CBD to THC and completed a battery of cognitive tasks at pre-use, 1 h post-use use, and 2 h post-use. Among 183 participants (56.8% female; Mage = 45.6), those in the group using CBD outperformed participants using CBD + THC 1 h post use in working memory and produced more stable scores in verbal learning after use than participants using THC or CBD + THC. Additionally, while older age was associated with better working memory in the CBD group before use, that relationship was progressively attenuated over the subsequent timepoints. There were no significant effects of cannabis use on cognition in the domains of executive function, episodic memory, or processing speed. Given the ubiquity of cannabis use for chronic pain and the ongoing call for more data, this study is relevant for informing clinical guidance on whether, and how, cannabis could be used in this context. In particular, understanding the acute impact on cognition from cannabis is critical, as cognitive functioning directly affects patients' daily lives and quality of life.

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