The serotonin 2A receptor agonist 25CN-NBOH increases murine heart rate and neck-arterial blood flow in a temperature-dependent manner
Tobias Buchborn, Taylor Lyons, Chenchen Song, Amanda Feilding, Thomas Knöpfel
Journal of Psychopharmacology February 12, 2020 DOI: 10.1177/0269881120903465 via OpenAlex
Summary
AI-generated from the abstractActivating serotonin 2A receptors with a highly selective agonist (N-(2-hydroxybenzyl)-2,5-dimethoxy-4-cyanophenylethylamine) increases heart rate and slightly elevates neck-arterial blood flow in anesthetized mice. Raising the heat-pad temperature from 37°C to 41°C enhanced the drug's effect on blood flow while counteracting the rapid heart rate. The drug also slowed breathing, which reversed at the higher temperature, and selectively increased core body temperature only under elevated pad conditions. Arterial oxygen saturation remained unchanged. These results suggest that selective serotonin 2A receptor activation links cardiovascular changes with thermoregulation, potentially influencing brain hemodynamics relevant to the psychedelic state.
Study at a glance
| Characteristics | Preclinical experimental study Peer reviewed |
|---|---|
| Population | Anesthetised mice |
| Interventions | N-(2-hydroxybenzyl)-2 5-dimethoxy-4-cyanophenylethylamine |
| Dose | 1.5 mg/kg, subcutaneous |
| Topics | Serotonin |
| Keywords | Thermoregulation Agonist Heart rate |
| Citations | 11 |
| Key finding | Selective serotonin 2A receptor activation with N-(2-hydroxybenzyl)-2,5-dimethoxy-4-cyanophenylethylamine increases heart rate and neck-arterial blood flow, with effects modulated by environmental temperature. |
Abstract
BACKGROUND: Serotonin 2A receptors, the molecular target of psychedelics, are expressed by neuronal and vascular cells, both of which might contribute to brain haemodynamic characteristics for the psychedelic state. AIM: Aiming for a systemic understanding of psychedelic vasoactivity, here we investigated the effect of N-(2-hydroxybenzyl)-2,5-dimethoxy-4-cyanophenylethylamine - a new-generation agonist with superior serotonin 2A receptor selectivity - on brain-supplying neck-arterial blood flow. METHODS: We recorded core body temperature and employed non-invasive, collar-sensor based pulse oximetry in anesthetised mice to extract parameters of local blood perfusion, oxygen saturation, heart and respiration rate. Hypothesising an overlap between serotonergic pulse- and thermoregulation, recordings were done under physiological and elevated pad temperatures. RESULTS: N-(2-hydroxybenzyl)-2,5-dimethoxy-4-cyanophenylethylamine (1.5 mg/kg, subcutaneous) significantly increased the frequency of heart beats accompanied by a slight elevation of neck-arterial blood flow. Increasing the animal-supporting heat-pad temperature from 37°C to 41°C enhanced the drug's effect on blood flow while counteracting tachycardia. Additionally, N-(2-hydroxybenzyl)-2,5-dimethoxy-4-cyanophenylethylamine promoted bradypnea, which, like tachycardia, quickly reversed at the elevated pad temperature. The interrelatedness of N-(2-hydroxybenzyl)-2,5-dimethoxy-4-cyanophenylethylamine's respiro-cardiovascular effects and thermoregulation was further corroborated by the drug selectively increasing the core body temperature at the elevated pad temperature. Arterial oxygen saturation was not affected by N-(2-hydroxybenzyl)-2,5-dimethoxy-4-cyanophenylethylamine at either temperature. CONCLUSIONS: Our findings imply that selective serotonin 2A receptor activation modulates systemic cardiovascular functioning in orchestration with thermoregulation and with immediate relevance to brain-imminent neck (most likely carotid) arteries. As carotid branching is a critical last hub to channel cardiovascular output to or away from the brain, our results might have implications for the brain haemodynamics associated with psychedelia.