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Role of 5-HT2A, 5-HT2C, 5-HT1A and TAAR1 receptors in the head twitch response induced by 5-hydroxytryptophan and psilocybin: Translational implications

Orr Shahar, Alexander Botvinnik, Noam Esh-Zuntz, Michal Brownstien, Rachel Wolf, Gilly Wolf, Bernard Lerer, Tzuri Lifschytz

bioRxiv (Cold Spring Harbor Laboratory) July 23, 2022 preprint DOI: 10.1101/2022.07.22.501026 via OpenAlex

Summary

AI-generated from the abstract

Psilocybin and the serotonin precursor 5-HTP both cause a characteristic head twitch response in mice, a behavior linked to the human psychedelic experience. The head twitch response depends primarily on the 5-HT2A receptor, as blocking this receptor with volanserin reduced the response. Activating the 5-HT1A receptor also reduced head twitching. In contrast, blocking the 5-HT2C receptor had a bimodal effect, enhancing the response at lower doses but reducing it at higher doses. Blocking the trace amine associated receptor 1 (TAAR1) reduced head twitching caused by 5-HTP but not by psilocybin, indicating a differential role for this receptor. These findings identify multiple receptors that could be targeted to modulate the effects of psychedelic compounds in therapeutic settings.

Study at a glance

Characteristics Experimental study
Population Male C57BL/6J mice, 11 weeks old, ~30g
Interventions 5-HTP psilocybin M100907 (volanserin) 8-OH-DPAT RS102221 EPPTB
Dose 5-HTP 50-250 mg/kg i.p. or 200 mg/kg i.p.; psilocybin 0.1-51.2 mg/kg i.p. or 4.4 mg/kg i.p.
Duration 20 minutes
Topics Psilocybin Serotonin
Keywords 5-HT Receptor Pharmacology 5-ht2 receptor
Citations 5
Key finding The head twitch response induced by 5-HTP and psilocybin is mediated primarily by the 5-HT2A receptor, attenuated by 5-HT1A receptor activation, modulated bimodally by the 5-HT2C receptor, and TAAR1 contributes to 5-HTP- but not psilocybin-induced head twitching.

Abstract

Abstract There is increasing interest in the therapeutic potential of psilocybin in psychiatric disorders. In common with other serotonergic psychedelics, psilocybin is thought to act via the 5-HT2A receptor (5-HT2AR). Serotonin is the endogenous ligand of 5-HTR. In rodents, the serotonin precursor, 5-hydroxytryptophan (5-HTP), and psilocybin, induce a characteristic head twitch response (HTR), which is correlated with the human psychedelic trip in intensity and duration. We examined the role of other serotonergic receptors and the trace amine associated receptor 1 (TAAR1) in modulating HTR induced by 5-HTP and psilocybin. Male C57BL/6J mice (11 weeks old, ~30g) were administered 5-HTP, 50-250 mg/kg intraperitoneally (i.p.) or 200 mg/kg i.p. after pretreatment with 5-HT/TAAR1 receptor modulators. Psilocybin was administered at 0.1-51.2 mg/kg i.p. or at 4.4 mg/kg i.p. preceded by 5-HT/TAAR1 receptor modulators. HTR was assessed in a custom-built magnetometer. 5-HTP and psilocybin induced a dose dependent increase in the frequency of HTR over 20 minutes with attenuation by the 5-HT2AR antagonist, M100907 (volanserin), and the 5-HT1AR agonist, 8-OH-DPAT. The 5-HT2CR antagonist, RS102221, enhanced HTR at lower doses but reduced it at higher doses for 5-HTP and psilocybin. The TAAR1 antagonist, EPPTB, reduced 5-HTP-but not psilocybin-induced HTR. We have confirmed the key role of 5-HT2AR in HTR and have demonstrated an effect of 5-HT1AR and a bimodal contribution of 5-HT2CR as well as a role of TAAR1 in modulating HTR induced by 5-HTP. Compounds that modulate HTR induced by psychedelics have a potentially important role in the emerging therapeutic use of these compounds. Significance Statement We have confirmed the key role of 5-HT2AR in in the induction of HTR by 5-HTP and psilocybin, have demonstrated the effect of a 5-HT1AR agonist to attenuate HTR and a bimodal contribution of 5-HT2CR as well as a role of TAAR1 in modulating HTR induced by 5-HTP. Compounds that modulate HTR induced by psychedelics have a potentially important role in the emerging therapeutic use of these compounds. Visual Abstract

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