Effects of repeated lysergic acid diethylamide (LSD) on the mouse brain endocannabinoidome and gut microbiome.
Antonio Inserra, Giada Giorgini, Sebastien Lacroix, Antonella Bertazzo, Jocelyn Choo, Athanasios Markopolous, Emily Grant, Armita Abolghasemi, Danilo De Gregorio, Nicolas Flamand, Geraint Rogers, Stefano Comai, Cristoforo Silvestri, Gabriella Gobbi, Vincenzo Di Marzo
British journal of pharmacology March 1, 2023 DOI: 10.1111/bph.15977 via PubMed
Summary
AI-generated from the abstractRepeated doses of LSD increase social behavior in male mice and alter brain chemistry and gut bacteria. LSD raised social preference and novelty seeking. In the hippocampus, LSD lowered several endocannabinoid-like compounds, including anandamide and related N-acylethanolamines, certain monoacylglycerols, prostaglandins, thromboxane, and kynurenine. The prefrontal cortex showed fewer changes. LSD also reduced the diversity of gut bacteria, prevented a shift in the Firmicutes:Bacteroidetes ratio, and changed the abundance of specific bacterial groups such as Bifidobacterium. These findings suggest that the prosocial effects of LSD involve the hippocampal endocannabinoidome and kynurenine pathway, along with gut microbiome alterations.
Study at a glance
| Characteristics | Observational cohort Peer reviewed |
|---|---|
| Population | Adult C57BL/6N male mice |
| Intervention | lysergic acid diethylamide (LSD) |
| Duration | 7 days |
| Topics | LSD |
| Keywords | 5-hydroxytryptamine system Endocannabinoidome Gut microbiome Kynurenine |
| Citations | 38 |
| Key finding | Repeated LSD administration increased sociability and altered hippocampal endocannabinoidome mediators and gut microbiota composition in male mice. |
Abstract
Psychedelics elicit prosocial, antidepressant and anxiolytic effects via neuroplasticity, neurotransmission and neuro-immunomodulatory mechanisms. Whether psychedelics affect the brain endocannabinoid system and its extended version, the endocannabinoidome (eCBome) or the gut microbiome, remains unknown. Adult C57BL/6N male mice were administered lysergic acid diethylamide (LSD) or saline for 7 days. Sociability was assessed in the direct social interaction and three chambers tests. Prefrontal cortex and hippocampal endocannabinoids, endocannabinoid-like mediators and metabolites were quantified via high-pressure liquid chromatography with tandem mass spectrometry (HPLC-MS/MS). Neurotransmitter levels were assessed via HPLC-UV/fluorescence. Gut microbiome changes were investigated by 16S ribosomal DNA sequencing. LSD increased social preference and novelty and decreased hippocampal levels of the N-acylethanolamines N-linoleoylethanolamine (LEA), anandamide (N-arachidonoylethanolamine) and N-docosahexaenoylethanolamine (DHEA); the monoacylglycerol 1/2-docosahexaenoylglycerol (1/2-DHG); the prostaglandins D2 (PGD2 ) and F2α (PGF2α ); thromboxane 2 and kynurenine. Prefrontal eCBome mediator and metabolite levels were less affected by the treatment. LSD decreased Shannon alpha diversity of the gut microbiota, prevented the decrease in the Firmicutes:Bacteroidetes ratio observed in saline-treated mice and altered the relative abundance of the bacterial taxa Bifidobacterium, Ileibacterium, Dubosiella and Rikenellaceae RC9. The prosocial effects elicited by repeated LSD administration are accompanied by alterations of hippocampal eCBome and kynurenine levels, and the composition of the gut microbiota. Modulation of the hippocampal eCBome and kynurenine pathway might represent a mechanism by which psychedelic compounds elicit prosocial effects and affect the gut microbiome.