Prolonged ketamine therapy differentially rescues psychobehavioural deficits via modulation of nitro-oxidative stress and oxytocin receptors in the gut-brain-axis of chronically-stressed mice

Psychoneuroendocrinology. 2023 Dec:158:106370. doi: 10.1016/j.psyneuen.2023.106370. Epub 2023 Aug 23.

Abstract

Ketamine is an anaesthetic known to have short but rapid-acting anti-depressant effects; however, the neurobehavioural effects of its prolonged use and its role on the oxytocin system in the gut-brain axis are largely undetermined. Female BALB/c mice were either exposed to the chronic unpredictable mild stress (CUMS) paradigm for 21 days and then treated with ketamine in four doses for 14 days or exposed to CUMS and treated simultaneously in four doses of ketamine during the last two weeks of CUMS exposure. After each dose, the forced swim test was conducted to assess depressive-like behaviour. Before sacrifice, all the mice were subjected to behavioural tests to assess anxiety, memory, and social interaction. Prolonged treatment of depression with ketamine did not rescue depressive-like behaviour. It did, however, improve depression-associated anxiety-like behaviours, short-term memory and social interaction deficits when compared to the stressed untreated mice. Furthermore, ketamine treatment enhanced plasma oxytocin levels, expression of oxytocin receptors; as well as abrogated nitro-oxidative stress biomarkers in the intestinal and hippocampal tissues. Taken together, our findings indicate that while short-term use of ketamine has anti-depressant benefits, its prolonged therapeutic use does not seem to adequately resolve depressive-like behaviour in mice.

Keywords: Chronic Unpredictable Mild Stress; Depression-associated Behaviours; Gut-Brain Axis; Ketamine; Oxidative/Nitrergic Stress; Oxytocin Receptors.

Publication types

  • Research Support, Non-U.S. Gov't

MeSH terms

  • Animals
  • Brain-Gut Axis
  • Depression / drug therapy
  • Depression / metabolism
  • Disease Models, Animal
  • Female
  • Hippocampus / metabolism
  • Ketamine* / metabolism
  • Ketamine* / pharmacology
  • Mice
  • Oxidative Stress
  • Oxytocin / metabolism
  • Oxytocin / pharmacology
  • Receptors, Oxytocin / metabolism
  • Stress, Psychological / drug therapy
  • Stress, Psychological / metabolism

Substances

  • Ketamine
  • Receptors, Oxytocin
  • Oxytocin