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Updated: May 7, 2026

Quantitative Polymerase Chain Reaction-based Analyses of Murine Intestinal Microbiota After Oral Antibiotic Treatment
Published on: November 17, 2018
Antipsychotics and the gut microbiome: olanzapine-induced metabolic dysfunction is attenuated by antibiotic
K J Davey1, P D Cotter, O O'Sullivan
11] Alimentary Pharmabiotic Centre, University College Cork, Cork, Ireland [2] School of Pharmacy, University College Cork, Cork, Ireland.
Abstract:
The atypical antipsychotic olanzapine is often associated with serious metabolic side effects including weight gain and increased visceral fat. These adverse events are a considerable clinical problem and the mechanisms underlying them are multifactorial and poorly understood. Growing evidence suggests that the gut microbiota has a key role in energy regulation and disease states such as obesity. Moreover, we recently showed that chronic olanzapine altered the composition of the gut microbiome in the rat. It is thus possible that treatments that alter gut microbiota composition could ameliorate olanzapine-induced weight gain and associated metabolic syndrome. To this end, we investigated the impact of antibiotic-induced alteration of the gut microbiota on the metabolic effects associated with chronic olanzapine treatment in female rats. Animals received vehicle or olanzapine (2 mg kg(-1) per day) for 21 days, intraperitoneal injection, two times daily. Animals were also coadministered vehicle or an antibiotic cocktail consisting of neomycin (250 mg kg(-1) per day), metronidazole (50 mg kg(-1) per day) and polymyxin B (9 mg kg(-1) per day) by oral gavage, daily, beginning 5 days before olanzapine treatment. The antibiotic cocktail drastically altered the microbiota of olanzapine-treated rats, and olanzapine alone was also associated with an altered microbiota. Coadministration of the antibiotic cocktail in olanzapine-treated rats attenuated: body weight gain, uterine fat deposition, macrophage infiltration of adipose tissue, plasma free fatty acid levels, all of which were increased by olanzapine alone. These results suggest that the gut microbiome has a role in the cycle of metabolic dysfunction associated with olanzapine, and could represent a novel therapeutic target for preventing antipsychotic-induced metabolic disease.
Insights
Altering gut microbiota with antibiotics reduced olanzapine-induced weight gain and metabolic dysfunction in rats. This suggests the gut microbiome is a therapeutic target for preventing antipsychotic side effects.
Area of Science:
- Neuropharmacology
- Microbiome Research
- Metabolic Syndrome
Background:
- Atypical antipsychotics like olanzapine cause significant metabolic side effects, including weight gain and visceral fat accumulation.
- The mechanisms behind these adverse events are complex and not fully understood.
- The gut microbiota plays a crucial role in energy balance and metabolic health, and has been implicated in obesity.
Purpose of the Study:
- To investigate if altering gut microbiota composition can mitigate olanzapine-induced metabolic disturbances.
- To explore the role of the gut microbiome in the development of metabolic syndrome associated with olanzapine treatment.
Main Methods:
- Female rats were treated with olanzapine (2 mg/kg/day) or vehicle for 21 days.
- An antibiotic cocktail (neomycin, metronidazole, polymyxin B) was administered daily via oral gavage, starting 5 days before olanzapine treatment, to alter gut microbiota.
- Key metabolic parameters including body weight, fat deposition, and plasma fatty acid levels were assessed.
Main Results:
- Olanzapine treatment alone significantly altered the gut microbiota composition and induced weight gain, increased uterine fat, elevated plasma free fatty acids, and enhanced macrophage infiltration in adipose tissue.
- Co-administration of the antibiotic cocktail drastically altered the gut microbiota in olanzapine-treated rats.
- Antibiotic treatment attenuated the olanzapine-induced increases in body weight gain, uterine fat deposition, and plasma free fatty acid levels.
Conclusions:
- The gut microbiome plays a significant role in the metabolic dysfunction caused by olanzapine.
- Modulating the gut microbiota may represent a novel therapeutic strategy to prevent or treat metabolic side effects associated with antipsychotic medications.
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