Brain-wide reconfiguration of burst firing by psilocybin reveals 5-HT2A-dependent circuit dynamics
Momi, D.; Nahas, Y.; Wyrick, D.; Marks, L. C.; Claar, L. D.; De Filippo, R.; Seyfourian, P.; Pizzagalli, D. A.; Buice, M.; Ott, T.; Koch, C.; Rembado, I.
Show abstract
Psilocybin produces rapid and lasting therapeutic effects, yet how 5-HT2A receptor activation reshapes brain-wide circuit dynamics during acute drug administration remains poorly understood. Using simultaneous multi-region Neuropixels recordings of 46,360 single units from 35 mice, together with scalp electroencephalography (EEG), pupillometry, and locomotion monitoring, we provide a brain-wide, single-unit and field-potential characterization of psilocybins acute effects, with pharmacological dissection using the 5-HT2A antagonist ketanserin. Psilocybin selectively reconfigured burst coding, rather than mean firing rate, across cortical, thalamic, and hippocampal circuits: burst firing decreased in hippocampal CA1-CA3 and was bidirectionally modulated in the thalamus, with the reticular nucleus bursting more and first-order geniculate nuclei bursting less. Critically, most of these burst effects were abolished by ketanserin, consistent with at least partial 5-HT2A receptor dependence. These data suggest that the psychedelic state is not simply a matter of how much neurons fire, but of how they fire, pointing to a region-specific, 5-HT2A-associated reconfiguration of burst coding that may underlie the acute phenomenology of the psilocybin experience.
Matching journals
The top 4 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Projection-Targeted Photopharmacology Reveals Distinct Anxiolytic Roles for Presynaptic mGluR2 in Prefrontal- and Insula-Amygdala Synapses 94%
- Circuit dissection and functional validation of a cross-species emotional biomarker 93%
- Transient developmental increase of prefrontal activity alters network maturation and causes cognitive dysfunction in adult mice 93%
Similar papers in this journal
- The M1/M4 agonist xanomeline modulates functional connectivity and NMDAR antagonist-induced changes in the mouse brain 94%
- Central amygdalar PKCδ neurons mediate fentanyl withdrawal 93%
- Operant self-stimulation of thalamic terminals in the dorsomedial striatum is constrained by metabotropic glutamate receptor 2 93%
Similar papers in this journal
- Dysfunction of ventral tegmental area GABA neurons causes mania-like behavior 93%
- Lasting dynamic effects of the psychedelic 2,5-dimethoxy-4-iodoamphetamine (+/-)-DOI) on cognitive flexibility 93%
- Serotonin sensing by microglia conditions the proper development of neuronal circuits and of social and adaptive skills 93%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.