Potentiation of 5-methoxy-N,N-dimethyltryptamine-induced hyperthermia by harmaline and the involvement of activation of 5-HT1A and 5-HT2A receptors.
Xi-Ling Jiang, Hong-Wu Shen, Ai-Ming Yu
Neuropharmacology February 1, 2015 DOI: 10.1016/j.neuropharm.2014.10.013 via PubMed
Summary
AI-generated from the abstractCo-administration of the monoamine oxidase inhibitor harmaline with the serotonin agonist 5-MeO-DMT potentiates hyperthermia in mice, involving activation of both 5-HT1A and 5-HT2A receptors. Harmaline alone induced hypothermia, while higher doses of 5-MeO-DMT alone caused hyperthermia. The combination of harmaline and 5-MeO-DMT produced greater hyperthermia, which could be suppressed by antagonists of either receptor. CYP2D6 status influenced harmaline-induced hypothermia and the hyperthermic response at certain dose combinations. Stress-induced hyperthermia was attenuated by 5-HT2A but not 5-HT1A antagonists. These findings may inform strategies to relieve lethal hyperthermia in serotonin toxicity.
Study at a glance
| Characteristics | Experimental study Peer reviewed |
|---|---|
| Population | Wild-type and CYP2D6-humanized (Tg-CYP2D6) mice |
| Interventions | Harmaline 5-MeO-DMT WAY-100635 MDL-100907 ketanserin |
| Dose | Harmaline 5 and 15 mg/kg; 5-MeO-DMT 10 and 20 mg/kg; co-administration harmaline 2, 5, or 15 mg/kg with 5-MeO-DMT 2 or 10 mg/kg |
| Keywords | Thermoregulation Temperature control Thermal regulation Drug interaction Substance interaction |
| Citations | 26 |
| Key finding | Co-administration of harmaline potentiates 5-MeO-DMT-induced hyperthermia through activation of both 5-HT1A and 5-HT2A receptors. |
Abstract
5-Methoxy-N,N-dimethyltryptamine (5-MeO-DMT) and harmaline are serotonin (5-HT) analogs often abused together, which alters thermoregulation that may indicate the severity of serotonin toxicity. Our recent studies have revealed that co-administration of monoamine oxidase inhibitor harmaline leads to greater and prolonged exposure to 5-HT agonist 5-MeO-DMT that might be influenced by cytochrome P450 2D6 (CYP2D6) status. This study was to define the effects of harmaline and 5-MeO-DMT on thermoregulation in wild-type and CYP2D6-humanized (Tg-CYP2D6) mice, as well as the involvement of 5-HT receptors. Animal core body temperatures were monitored noninvasively in the home cages after implantation of telemetry transmitters and administration of drugs. Harmaline (5 and 15 mg/kg, i.p.) alone was shown to induce hypothermia that was significantly affected by CYP2D6 status. In contrast, higher doses of 5-MeO-DMT (10 and 20 mg/kg) alone caused hyperthermia. Co-administration of harmaline (2, 5 or 15 mg/kg) remarkably potentiated the hyperthermia elicited by 5-MeO-DMT (2 or 10 mg/kg), which might be influenced by CYP2D6 status at certain dose combination. Interestingly, harmaline-induced hypothermia was only attenuated by 5-HT1A receptor antagonist WAY-100635, whereas 5-MeO-DMT- and harmaline-5-MeO-DMT-induced hyperthermia could be suppressed by either WAY-100635 or 5-HT2A receptor antagonists (MDL-100907 and ketanserin). Moreover, stress-induced hyperthermia under home cage conditions was not affected by WAY-100635 but surprisingly attenuated by MDL-100907 and ketanserin. Our results indicate that co-administration of monoamine oxidase inhibitor largely potentiates 5-MeO-DMT-induced hyperthermia that involves the activation of both 5-HT1A and 5-HT2A receptors. These findings shall provide insights into development of anxiolytic drugs and new strategies to relieve the lethal hyperthermia in serotonin toxicity.