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Updated: Feb 6, 2026

Collection of Frozen Rodent Brain Regions for Downstream Analyses
Published on: April 23, 2020
High-dose ondansetron reduces activation of interoceptive and sensorimotor brain regions
Emily R Stern1,2, Rebbia Shahab3,4, Stephanie J Grimaldi5
1Department of Psychiatry, The New York University School of Medicine, New York, NY, USA. emily.stern@nyumc.org.
Abstract:
Several psychiatric disorders involve abnormalities of interoception and associated neural circuitry centered on the insula. The development of interventions modulating interoceptive circuits could lead to novel treatment approaches for these disorders. The 5-HT3 receptor antagonist ondansetron is a good candidate for the modulation of interoceptive circuits, as 5-HT3 receptors are located abundantly on sensory pathways and ondansetron has shown some clinical utility in disorders characterized by sensory and interoceptive abnormalities. The present study tested the ability of three different doses of ondansetron to engage neural regions involved in interoception to determine the drug's utility as a therapeutic agent to target circuit abnormalities in patients. Fifty-three healthy subjects were randomized to receive a single 8-mg (n = 18), 16-mg (n = 17), or 24-mg (n = 18) dose of ondansetron and placebo before MRI scanning on separate days. Subjects performed an fMRI task previously shown to engage interoceptive circuitry in which they viewed videos depicting body movements/sensation and control videos. The results revealed a highly significant relationship between dosage and activation in bilateral insula, somatosensory and premotor regions, cingulate cortex, and temporal cortex for control but not body-focused videos. These effects were driven by a robust reduction in activation for ondansetron compared to placebo for the 24-mg group, with weaker effects for the 16-mg and 8-mg groups. In conclusion, high-dose ondansetron reduces activation of several areas important for interoception, including insula and sensorimotor cortical regions. This study reveals the potential utility of this drug in modulating hyperactivity in these regions in patients.
Insights
High-dose ondansetron (a 5-HT3 receptor antagonist) significantly reduced brain activity in regions crucial for interoception, including the insula. This suggests ondansetron
Area of Science:
- Neuroscience
- Psychiatry
- Pharmacology
Background:
- Psychiatric disorders often involve abnormal interoception and insula-centered neural circuits.
- Interoceptive circuit modulation offers novel treatment potential.
- Ondansetron, a 5-HT3 receptor antagonist, may modulate interoceptive circuits due to 5-HT3 receptor distribution and prior clinical utility.
Purpose of the Study:
- To investigate the dose-dependent effects of ondansetron on neural regions involved in interoception.
- To assess ondansetron's potential as a therapeutic agent for targeting circuit abnormalities in psychiatric disorders.
Main Methods:
- Fifty-three healthy subjects received randomized single doses of ondansetron (8, 16, or 24 mg) or placebo.
- Functional magnetic resonance imaging (fMRI) was used to measure brain activity during an interoception-related task.
- Participants viewed videos depicting body sensations and control videos.
Main Results:
- A significant dose-dependent reduction in activation was observed in the bilateral insula, somatosensory, premotor, cingulate, and temporal cortices for control videos.
- These effects were most pronounced in the 24-mg ondansetron group, with weaker effects in the 16-mg and 8-mg groups.
- No significant effects were found for body-focused videos.
Conclusions:
- High-dose ondansetron effectively reduces activation in key interoceptive brain regions, including the insula and sensorimotor cortex.
- Ondansetron demonstrates potential for modulating hyperactivity in these regions, suggesting therapeutic utility for psychiatric disorders characterized by interoceptive abnormalities.
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