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5-Methoxy-α-methyltryptamine (5-MeO-AMT), a tryptamine derivative, induces head-twitch responses in mice through the activation of serotonin receptor 2a in the prefrontal cortex

  • Arvie Abiero
  • , Chrislean Jun Botanas
  • , Leandro Val Sayson
  • , Raly James Custodio
  • , June Bryan de la Peña
  • , Mikyung Kim
  • , Hyun Jun Lee
  • , Joung Wook Seo
  • , In Soo Ryu
  • , Cho Min Chang
  • , Ji Seul Yang
  • , Yong Sup Lee
  • , Choon Gon Jang
  • , Hee Jin Kim
  • , Jae Hoon Cheong
  • Sahmyook University
  • University of Texas at Dallas
  • Korea Institute of Toxicology
  • Kyung Hee University

Research output: Contribution to journalArticlepeer-review

Abstract

5-Methoxy-α-methyltryptamine (5-MeO-AMT) is a tryptamine derivative that is used recreationally because of its reported hallucinogenic and mood elevating effects. Studies suggest that the psychopharmacological effects of tryptamines involve serotonin receptor 2a (5-HTR2a) activation in the brain. The head-twitch response (HTR) is widely used as a behavioral correlate for assessing 5-HTR2a agonist activity of a drug. Thus, we investigated whether 5-MeO-AMT induces HTR in mice and explored its mechanism of action. 5-MeO-AMT (0.3, 1, 3, 10 mg/kg) was administered once a day for 7 days, and the HTR was measured after 1 day (acute) and 7 days (repeated) of administration. Another cohort of mice was treated with 5-HTR2a antagonist ketanserin (KS) before 5-MeO-AMT administration. We measured 5-HTR2a and 5-HTR2c mRNA levels in the prefrontal cortex of the mice treated acutely or repeatedly with 5-MeO-AMT. We performed western blotting to determine the effects of the drug on the expression of G protein (G q/11 ), protein kinase C gamma (PKC-γ), and extracellular signal-regulated kinases 1/2 (ERK1/2), in addition to PKC-γ and ERK1/2 phosphorylation. Additionally, we evaluated potential rewarding and reinforcing effects of 5-MeO-AMT using locomotor sensitization, conditioned place preference (CPP), and self-administration (SA) paradigms. Acute 5-MeO-AMT administration elicited the HTR, while repeated administration resulted in tolerance. KS blocked the 5-MeO-AMT-induced HTR. 5-MeO-AMT increased 5-HTR2a mRNA levels and induced PKC-γ phosphorylation in the prefrontal cortex. 5-MeO-AMT did not induce locomotor sensitization, CPP, or SA. This study shows that 5-MeO-AMT induces HTR through 5-HTR2a activation in the prefrontal cortex, and may have low potential for abuse.

Original languageEnglish
Pages (from-to)828-835
Number of pages8
JournalBehavioural Brain Research
Volume359
DOIs
StatePublished - 1 Feb 2019

Keywords

  • 5-Methoxy-a-methyltryptamine
  • Conditioned place preference
  • Head-twitch response
  • Self-administration
  • Serotonin receptor 2a

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