Cellular rules underlying psychedelic control of prefrontal pyramidal neurons
Ekins, T. G.; Brooks, I.; Kailasa, S.; Rybicki-Kler, C.; Jedrasiak-Cape, I.; Donoho, E.; Mashour, G. A.; Rech, J.; Ahmed, O. J.
Show abstract
Classical psychedelic drugs are thought to increase excitability of pyramidal cells in prefrontal cortex via activation of serotonin 2A receptors (5-HT2ARs). Here, we instead find that multiple classes of psychedelics dose-dependently suppress intrinsic excitability of pyramidal neurons, and that extracellular delivery of psychedelics decreases excitability significantly more than intracellular delivery. A previously unknown mechanism underlies this psychedelic drug action: enhancement of ubiquitously expressed potassium "M-current" channels that is independent of 5-HT2R activation. Using machine-learning-based data assimilation models, we show that M-current activation interacts with previously described mechanisms to dramatically reduce intrinsic excitability and shorten working memory timespan. Thus, psychedelic drugs suppress intrinsic excitability by modulating ion channels that are expressed throughout the brain, potentially triggering homeostatic adjustments that can contribute to widespread therapeutic benefits.
Matching journals
The top 3 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Brain-wide genetic mapping identifies the indusium griseum as a prenatal and shared target of pharmacologically-unrelated psychostimulants 95%
- Fully-primed slowly-recovering vesicles mediate presynaptic LTP at neocortical neurons 95%
- Modular Arrangement of Synaptic and Intrinsic Homeostatic Plasticity within Visual Cortical Circuits 95%
Similar papers in this journal
- Temporal scaling of dopamine neuron firing and dopamine release by distinct ion channels shape behavior 94%
- Inputs to the locus coeruleus from the periaqueductal gray and rostroventral medulla shape opioid-mediated descending pain modulation 94%
- Sodium channel endocytosis drives axon initial segment plasticity 94%
Similar papers in this journal
- Ca2+-dependent phosphodiesterase 1 regulates the plasticity of striatal spiny projection neuron glutamatergic synapses 95%
- Choice suppression is achieved through opponent but not independent function of the striatal indirect pathway in mice 95%
- Multi-modal characterization and simulation of human epileptic circuitry 94%
Similar papers in this journal
- Cell class-specific electric field entrainment of neural activity 94%
- Parallel social information processing circuits are differentially impacted in autism 94%
- Projection-Targeted Photopharmacology Reveals Distinct Anxiolytic Roles for Presynaptic mGluR2 in Prefrontal- and Insula-Amygdala Synapses 94%
Similar papers in this journal
- Equivalent excitability through different sodium channels and implications for the analgesic efficacy of selective drugs 95%
- Differential roles of NaV1.2 and NaV1.6 in neocortical pyramidal cell excitability 94%
- Cholinergic Interneurons Drive Motivation by Promoting Dopamine Release in the Nucleus Accumbens 94%
"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.