SSRI and psychedelics: Difference between revisions
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Accordingly, many of the subjective and biological effects of classical psychedelics are blocked after administering 5HT2AR antagonists such as ketanserin.<ref>Preller KH, Herdener M, Pokorny T, Planzer A, Kraehenmann R, Stämpfli P, et al. The Fabric of Meaning and Subjective Effects in LSD-Induced States Depend on Serotonin 2A Receptor Activation. Curr Biol. 2017 Feb;27(3):451–7.</ref><ref>Ly C, Greb AC, Cameron LP, Wong JM, Barragan EV, Wilson PC, et al. Psychedelics Promote Structural and Functional Neural Plasticity. Cell Rep. 2018 Jun 12;23(11):3170–82.</ref> | Accordingly, many of the subjective and biological effects of classical psychedelics are blocked after administering 5HT2AR antagonists such as ketanserin.<ref>Preller KH, Herdener M, Pokorny T, Planzer A, Kraehenmann R, Stämpfli P, et al. The Fabric of Meaning and Subjective Effects in LSD-Induced States Depend on Serotonin 2A Receptor Activation. Curr Biol. 2017 Feb;27(3):451–7.</ref><ref>Ly C, Greb AC, Cameron LP, Wong JM, Barragan EV, Wilson PC, et al. Psychedelics Promote Structural and Functional Neural Plasticity. Cell Rep. 2018 Jun 12;23(11):3170–82.</ref> Two particular issues have been raised when it comes to their interaction with antidepressant drugs: the so-called serotonin syndrome and a decrease in subjective psychedelic effects. |
Revision as of 02:34, 1 July 2022
Accordingly, many of the subjective and biological effects of classical psychedelics are blocked after administering 5HT2AR antagonists such as ketanserin.[1][2] Two particular issues have been raised when it comes to their interaction with antidepressant drugs: the so-called serotonin syndrome and a decrease in subjective psychedelic effects.
- ↑ Preller KH, Herdener M, Pokorny T, Planzer A, Kraehenmann R, Stämpfli P, et al. The Fabric of Meaning and Subjective Effects in LSD-Induced States Depend on Serotonin 2A Receptor Activation. Curr Biol. 2017 Feb;27(3):451–7.
- ↑ Ly C, Greb AC, Cameron LP, Wong JM, Barragan EV, Wilson PC, et al. Psychedelics Promote Structural and Functional Neural Plasticity. Cell Rep. 2018 Jun 12;23(11):3170–82.