Antibiotic-induced Microbiome Depletion Selectively Reduces Baseline Hypothalamic Oxytocin Signaling without Affecting MDMA-induced Oxytocin Response in Rats.
Yong Yue, Yi Cai, Rumi Murayama, Xin Ding, Xiayun Wan, Guilin Liu, Hirofumi Hashimoto, Naohiko Anzai, Kenji Hashimoto
Clinical psychopharmacology and neuroscience : the official scientific journal of the Korean College of Neuropsychopharmacology May 31, 2026 DOI: 10.9758/cpn.25.1381 via PubMed
Summary
AI-generated from the abstractGut bacteria contribute to baseline central oxytocin signaling in rats, but are not necessary for the acute oxytocin release triggered by MDMA. Male rats given broad-spectrum antibiotics for seven days showed enlarged ceca, confirming microbiome disruption, yet maintained stable body weight. Baseline oxytocin expression in the paraventricular and supraoptic nuclei of the hypothalamus was significantly reduced after antibiotic treatment, while peripheral oxytocin levels remained unchanged. MDMA administration increased central oxytocin expression similarly in both antibiotic-treated and control rats, and MDMA-induced peripheral oxytocin levels also did not differ between groups. The findings indicate that gut microbiota help maintain central oxytocin under normal conditions but are not required for MDMA's oxytocin-activating effects.
Study at a glance
| Characteristics | Randomized controlled trial Peer reviewed |
|---|---|
| Population | Male Wistar rats |
| Interventions | broad-spectrum antibiotics MDMA |
| Dose | 30 mg/kg |
| Duration | 7-day antibiotic treatment, followed by a single oral administration of MDMA |
| Keywords | Anti-bacterial agents Gut-brain axis N-methyl-3,4-methylenedioxyamphetamine Oxytocin |
| Key finding | Antibiotic-induced microbiome depletion reduces baseline central oxytocin expression in the paraventricular and supraoptic nuclei but does not alter MDMA-induced oxytocin responses in the brain or circulation. |
Abstract
To determine whether antibiotic-induced microbiome depletion influences baseline or 3,4-methylenedioxymethamphetamine (MDMA)-induced oxytocin signaling in rats. Male Wistar rats received broad-spectrum antibiotics (ABX) or water for 7 days, followed by a single oral administration of MDMA (30 mg/kg). Plasma oxytocin levels were measured by ELISA, and oxytocin-immunoreactivity in the paraventricular (PVN) and supraoptic (SON) nuclei were quantified by immunofluorescence. ABX treatment induced marked cecal enlargement without affecting body weight, confirming microbiome disruption while maintaining systemic stability. Peripheral oxytocin concentrations were unchanged; however, baseline central oxytocin expression in both the PVN and SON was significantly reduced after ABX treatment. MDMA increased central oxytocin expression, and this response was not significantly altered by microbiome depletion. Similarly, MDMA-induced peripheral oxytocin levels did not differ between control and ABX-treated rats. Antibiotic-induced microbiome depletion selectively attenuates baseline central oxytocin signaling while leaving peripheral oxytocin regulation intact. In contrast, MDMA-induced oxytocin responses in both the brain and circulation are preserved despite microbiome disruption. These findings suggest that gut microbiota contribute to central oxytocin homeostasis under basal conditions but are not essential for acute MDMA-induced oxytocin activation.