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Psychedelic-like Properties of Quipazine and Its Structural Analogues in Mice

  • Mario De La Fuente Revenga
  • , Urjita H. Shah
  • , Nima Nassehi
  • , Alaina M. Jaster
  • , Prithvi Hemanth
  • , Salvador Sierra
  • , Malgorzata Dukat
  • , Javier González-Maeso

Research output: Contribution to journalArticlepeer-review

21 Scopus citations

Abstract

Known classic psychedelic serotonin 2A receptor (5-HT2AR) agonists retain a tryptamine or phenethylamine at their structural core. However, activation of the 5-HT2AR can be elicited by drugs lacking these fundamental scaffolds. Such is the case of the N-substituted piperazine quipazine. Here, we show that quipazine bound to and activated 5-HT2AR as measured by [3H]ketanserin binding displacement, Ca2+ mobilization, and accumulation of the canonical Gq/11 signaling pathway mediator inositol monophosphate (IP1) in vitro and in vivo. Additionally, quipazine induced via 5-HT2AR an expression pattern of immediate early genes (IEG) in the mouse somatosensory cortex consistent with that of classic psychedelics. In the mouse head-twitch response (HTR) model of psychedelic-like action, quipazine produced a lasting effect with high maximal responses during the peak effect that were successfully blocked by the 5-HT2AR antagonist M100907 and absent in 5-HT2AR knockout (KO) mice. The acute effect of quipazine on HTR appeared to be unaffected by serotonin depletion and was independent from 5-HT3R activation. Interestingly, some of these features were shared by its deaza bioisostere 2-NP, but not by other closely related piperazine congeners, suggesting that quipazine might represent a distinct cluster within the family of psychoactive piperazines. Together, our results add to the mounting evidence that quipazine's profile matches that of classic psychedelic 5-HT2AR agonists at cellular signaling and behavioral pharmacology levels.

Original languageEnglish
Pages (from-to)831-844
Number of pages14
JournalACS Chemical Neuroscience
Volume12
Issue number5
DOIs
StatePublished - 3 Mar 2021
Externally publishedYes

Keywords

  • Psychedelics
  • animal models
  • pharmacology
  • piperazines
  • quipazine
  • serotonin receptors

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