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Lysergic acid diethylamide induces increased signalling entropy in rats’ prefrontal cortex

Aurora Savino, Charles D. Nichols

Journal of Neurochemistry November 3, 2021 DOI: 10.1111/jnc.15534 (opens in new tab)

Study at a glance

AI-extracted from the abstract
Characteristics Observational study Peer reviewed
Population Prefrontal cortex of rats chronically treated with LSD
Intervention lysergic acid diethylamide (LSD)
Duration Chronic treatment
Topics LSD
Keywords Prefrontal cortex Signalling
Citations 18
Key findings Chronic LSD treatment rewires gene co-expression networks in the rat prefrontal cortex, making them less centralized but more complex with increased signaling entropy, mirroring increased brain entropy seen in human neuroimaging studies.

Abstract

Abstract Psychedelic drugs are gaining attention from the scientific community as potential new compounds for the treatment of psychiatric diseases such as mood and substance use disorders. The 5‐HT 2A receptor has been identified as the main molecular target, and early studies pointed to an effect on the expression of neuroplasticity genes. Analysing RNA‐seq data from the prefrontal cortex of rats chronically treated with lysergic acid diethylamide (LSD), we describe the psychedelic‐induced rewiring of gene co‐expression networks, which become less centralised but more complex, with an overall increase in signalling entropy typical of highly plastic systems. Intriguingly, signalling entropy mirrors, at the molecular level, the increased brain entropy reported through neuroimaging studies in human, suggesting the underlying mechanisms of higher‐order phenomena. Moreover, from the analysis of network topology, we identify potential transcriptional regulators and propose the involvement of different cell types in psychedelics’ activity. image

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