Underlying pharmacological mechanisms of psilocin-induced broadband desynchronization and disconnection of EEG in rats

裸盖菇素诱发大鼠脑电图宽带去同步和断开的潜在药理学机制

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作者:Filip Tylš, Čestmír Vejmola, Vlastimil Koudelka, Václava Piorecká, Lukáš Kadeřábek, Marcel Bochin, Tomáš Novák, Martin Kuchař, Zdeňka Bendová, Martin Brunovský, Jiří Horáček, Tomáš Pálení Ček

Discussion

These findings suggest the involvement of all three serotonergic receptors studied as well as the role of dopaminergic mechanisms in power spectra/current density with only the 5-HT2A receptor being effective in both studied metrics. This opens an important discussion on the role of other than 5-HT2A-dependent mechanisms underlying the neurobiology of psychedelics.

Methods

Selective antagonists of serotonin receptors (5-HT1A WAY100635, 5-HT2A MDL100907, 5-HT2C SB242084) and antipsychotics haloperidol, a D2 antagonist, and clozapine, a mixed D2 and 5-HT receptor antagonist, were used in order to clarify the underlying pharmacology.

Results

Psilocin-induced broadband decrease in the mean absolute EEG power was normalized by all antagonists and antipsychotics used within the frequency range 1-25 Hz; however, decreases in 25-40 Hz were influenced only by clozapine. Psilocin-induced decrease in global functional connectivity and, specifically, fronto-temporal disconnection were reversed by the 5-HT2A antagonist while other drugs had no effect.

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