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.

Translational Psychiatry
|October 3, 2013
PubMed

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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