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Effect of psilocybin on decision-making and motivation in the healthy rat.

Brianna F Roberts, Alexia L Zylko, Courtney E Waters, Jessica D Crowder, William J Gibbons, Abhishek K Sen, J Andrew Jones, Matthew S McMurray

Behavioural brain research February 25, 2023 DOI: 10.1016/j.bbr.2022.114262 via PubMed

Summary

AI-generated from the abstract

A single 1 mg/kg dose of psilocybin did not alter decision-making in probability or delay discounting tasks and did not reduce motivation in a progressive ratio task in healthy male and female rats. Psilocybin did produce the expected increase in head twitch responses, confirming the drug was pharmacologically active. These results suggest psilocybin may not impair or improve reward-based decision-making or motivation, indicating that its therapeutic effects in mental health disorders may not involve changes to brain systems underlying reward and decision-making. The findings also imply that widespread cognitive impairments may not occur even with chronic psilocybin treatment.

Study at a glance

Characteristics Randomized controlled trial Peer reviewed
Sample size 40
Population Healthy male and female rats
Intervention Psilocybin
Dose 1 mg/kg
Topics Psilocybin
Keywords Delay discounting Head twitch response Motivation Probability discounting Progressive ratio
Citations 13
Key finding Psilocybin at 1 mg/kg did not affect decision-making in probability or delay discounting tasks and did not reduce motivation in a progressive ratio task in rats.

Abstract

Psilocybin and its active metabolite psilocin are hallucinogenic serotonergic agonists with high affinity for several serotonin receptors. In addition to underlying the hallucinogenic effects of these compounds, serotonin receptor activation also has important effects on decision-making and goal-directed behaviors. The impact of psilocybin and psilocin on these cognitive systems, however, remains unclear. This study investigated the effects of psilocybin treatment on decision-making and motivation in healthy male and female rats. We compared probability and delay discounting performance of psilocybin treated (1 mg/kg) to vehicle rats (n = 10/sex/group), and further assessed motivation in each group using a progressive ratio task. We also confirmed drug action by assessing head twitch responses after psilocybin treatment (1 mg/kg). Results from this study demonstrated that exposure to 1 mg/kg psilocybin did not affect decision-making in the probability and delay discounting tasks and did not reduce response rates in the progressive ratio task. However, psilocybin treatment did cause the expected increase in head twitch responses in both male and female rats, demonstrating that the drug was delivered at a pharmacologically relevant dosage. Combined, these results suggest that psilocybin may not impair or improve decision-making and motivation. Considering recent interest in psilocybin as a potential fast-acting therapeutic for a variety of mental health disorders, our findings also suggest the therapeutic effects of this drug may not be mediated by changes to the brain systems underlying reward and decision-making. Finally, these results may have important implications regarding the relative safety of this compound, suggesting that widespread cognitive impairments may not be seen in subjects, even after chronic treatment.

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