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Serotonin Transporter Blockade Reduces the Psychedelic-Like Effects of 4-Methoxy- N -methyl- N -isopropyltryptamine and Related Analogs

Grant C. Glatfelter, Serena S. Schalk, Donna Walther, Alexander D. Maitland, Nicholas R. Gonzalez, John S. Partilla, Nicholas A. Anas, A.r. Chadeayne, Marilyn Naeem, David R. Manke, John D. Mccorvy, Michael H. Baumann

ACS Chemical Neuroscience May 27, 2026 DOI: 10.1021/acschemneuro.6c00083 via OpenAlex

Summary

AI-generated from the abstract

Tryptamine psychedelics produce their effects mainly by activating serotonin 2A receptors, but many also affect other targets. 4-MeO-MiPT, a compound that both activates 5-HT2A receptors and blocks the serotonin transporter (SERT), produces blunted psychedelic effects in humans. In mice, 4-MeO-MiPT and its analogs with stronger SERT blockade showed fewer head twitch responses (a proxy for psychedelic-like effects) than their 4-hydroxy counterparts. Pretreating mice with the SERT inhibitor fluoxetine reduced head twitch responses from 4-hydroxy compounds to levels seen with the 4-methoxy analogs. The findings suggest that dual 5-HT2A/SERT ligands may have therapeutic potential with reduced acute psychedelic effects.

Study at a glance

Characteristics Preclinical experimental study Peer reviewed
Population C57BL/6J mice
Topics Serotonin
Keywords Serotonin transporter Tryptamine Partial agonist Blockade Reuptake inhibitor
Key finding 4-MeO-MiPT and its analogs with potent SERT inhibition show reduced psychedelic-like effects in mice compared to their 4-hydroxy counterparts, indicating that SERT blockade attenuates 5-HT2A-mediated responses.

Abstract

High Resolution Image Download MS PowerPoint Slide Tryptamine psychedelics induce psychoactive effects via agonist actions at serotonin 2A receptors (5-HT 2A ), but the compounds are generally nonselective. 4-Methoxy- N -methyl- N -isopropyltryptamine (4-MeO-MiPT) is a 5-HT 2A agonist which also blocks the 5-HT transporter (SERT) and has blunted visual and other psychedelic effects in humans. Here, we compared the pharmacology of 4-MeO-MiPT, its 4-hydroxy derivative (4-HO-MiPT), and related analogs with N- alkyl or 4-alkoxy variations. We hypothesized that compounds with more potent SERT uptake inhibition would display reduced 5-HT 2A -mediated psychedelic-like effects in the mouse head twitch response (HTR) model. In vitro target profiling revealed potent and efficacious 5-HT receptor activities for most of the compounds, including 5-HT 2A receptor agonism (EC 50 = 10–118 nM, E max = 72–97% 5-HT). Importantly, 4-MeO-MiPT and its N, N -diisopropyl (4-MeO-DiPT) and N -methyl- N -cyclopropyl (4-MeO-McPT) analogs displayed more potent uptake inhibition at SERT (IC 50 = 17–107 nM) than their 4-OH counterparts (IC 50 = 280–423 nM). Studies administering the drugs subcutaneously to C57BL/6J mice revealed that 4-HO- and 4-MeO-MiPT (0.03–30 mg/kg) had similar potencies for inducing HTRs (ED 50 = 0.75 vs 0.97 mg/kg), but 4-MeO-MiPT had reduced efficacy ( E max = 77 vs 34 HTRs/30 min). A similar trend for decreased HTRs was observed for 4-MeO-DiPT and 4-MeO-McPT. Pretreatment with the SERT inhibitor fluoxetine (10 mg/kg) prior to 4-HO-MiPT, 4-HO-DiPT, or 4-HO-McPT reduced the maximal number of HTRs to levels observed for their respective 4-MeO analogs. Overall, our data indicate that 4-MeO-MiPT interacts with 5-HT 2A and other 5-HT receptors, but the drug also inhibits SERT to reduce the efficacy of psychedelic-like effects in mice. Therefore, 4-MeO-MiPT and other dual 5-HT 2A /SERT ligands may be therapeutically relevant compounds with reduced potential for traditional acute psychedelic effects.

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