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Spatial Correspondence of LSD-Induced Variations on Brain Functioning at Rest With Serotonin Receptor Expression.

Stefano Delli Pizzi, Piero Chiacchiaretta, Carlo Sestieri, Antonio Ferretti, Marco Onofrj, Stefania Della Penna, Leor Roseman, Christopher Timmermann, David J Nutt, Robin L Carhart-Harris, Stefano L Sensi

Biological psychiatry. Cognitive neuroscience and neuroimaging July 1, 2023 DOI: 10.1016/j.bpsc.2023.03.009 via PubMed

Summary

AI-generated from the abstract

LSD alters brain functional connectivity and local signal amplitude in opposite directions depending on the type of serotonin receptor involved. In healthy volunteers, LSD increased activity and connectivity in cortical regions of the default mode and attention networks, which have high densities of 5-HT2A receptors; these changes correlated with visual hallucinations. Conversely, LSD decreased activity and connectivity in limbic areas rich in 5-HT1A receptors. The spatial patterns of these functional changes overlapped with the distribution of the two serotonin receptor subtypes, suggesting distinct receptor-mediated mechanisms underlie LSD's reorganization of brain networks.

Study at a glance

Characteristics Observational cohort Peer reviewed
Sample size 15
Population Healthy volunteers
Intervention LSD
Topics LSD Serotonin
Keywords 5-ht2a Hallucinations Neuroscience Psychedelics LSD Acid
Citations 18
Key finding LSD increases functional connectivity and local signal amplitude in cortical regions with high 5-HT2A receptor expression, correlating with visual hallucinations, while decreasing these measures in limbic areas with high 5-HT1A receptor expression.

Abstract

Lysergic acid diethylamide (LSD) is an atypical psychedelic compound that exerts its effects through pleiotropic actions, mainly involving 1A/2A serotoninergic (5-HT) receptor subtypes. However, the mechanisms by which LSD promotes a reorganization of the brain's functional activity and connectivity are still partially unknown. Our study analyzed resting-state functional magnetic resonance imaging data acquired from 15 healthy volunteers undergoing LSD single-dose intake. A voxelwise analysis investigated the alterations of the brain's intrinsic functional connectivity and local signal amplitude induced by LSD or by a placebo. Quantitative comparisons assessed the spatial overlap between these 2 indices of functional reorganization and the topography of receptor expression obtained from a publicly available collection of in vivo, whole-brain atlases. Finally, linear regression models explored the relationships between changes in resting-state functional magnetic resonance imaging and behavioral aspects of the psychedelic experience. LSD elicited modifications of the cortical functional architecture that spatially overlapped with the distribution of serotoninergic receptors. Local signal amplitude and functional connectivity increased in regions belonging to the default mode and attention networks associated with high expression of 5-HT2A receptors. These functional changes correlate with the occurrence of simple and complex visual hallucinations. At the same time, a decrease in local signal amplitude and intrinsic connectivity was observed in limbic areas, which are dense with 5-HT1A receptors. This study provides new insights into the neural processes underlying the brain network reconfiguration induced by LSD. It also identifies a topographical relationship between opposite effects on brain functioning and the spatial distribution of different 5-HT receptors.

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