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Molecular mechanisms for the antidepressant-like effects of a low-dose ketamine treatment in a DFP-based rat model for Gulf War Illness.

A. C. Ribeiro, Jackie Zhu, Mohamad M. Kronfol, F. Jahr, Rabha M. Younis, Elisa Hawkins, J. McClay, L. S. Deshpande

Neurotoxicology June 24, 2020 DOI: 10.1016/j.neuro.2020.06.011 (opens in new tab) via Semantic Scholar

Summary

AI-generated from the abstract

In a rat model of Gulf War Illness-related depression, a single dose of ketamine produced antidepressant-like effects within one hour that lasted at least 24 hours. The rapid effect appears linked to reduced calcium signaling through NMDA receptors, while the sustained effect involves increased brain-derived neurotrophic factor (BDNF) signaling. Blocking BDNF receptors eliminated the 24-hour but not the one-hour effect. The findings suggest ketamine may treat depression in Gulf War veterans through two distinct mechanisms.

Study at a glance

Characteristics Animal study Peer reviewed
Population Rats exposed to diisopropyl fluorophosphate (DFP)
Intervention Ketamine
Dose 10 mg/kg, i.p.
Keywords Medicine Environmental science
Key finding Ketamine produces rapid and sustained antidepressant-like effects in a rat model of DFP-induced depression through NMDAR-Ca2+ inhibition and BDNF upregulation.

Abstract

Exposure to organophosphates (OP) during the First Gulf War is among one of the factors for Gulf War Illness (GWI) development in veterans and it has been challenging to treat GWI symptoms with existing therapies. Ketamine produces a rapid-onset and sustained antidepressant response, but there is no evidence whether ketamine treatment is effective for GWI depression. Repeated, low-dose exposure to diisopropyl fluorophosphate (DFP) mimic Gulf War related OP exposures and produces a chronic depressive state in rats. In this study, DFP-exposed rats treated with ketamine (10 mg/kg, i.p.) exhibited antidepressant-like effect on the Forced Swim Test at 1-h. This effect persisted at 24-h post ketamine, a time-point by which it is eliminated from the brain suggesting involvement of mechanisms that affect long-term synaptic plasticity. Western blot analysis showed significantly lower Brain-Derived Neurotrophic Factor (BDNF) levels in DFP rat brains. Ketamine produced a nonsignificant increase in BDNF expression at 1-h but produced a larger, significant (2.2-fold) increase at 24-h in DFP rats. We previously reported chronic hippocampal calcium elevations ([Ca2+]i) in DFP rats. Ketamine-treated DFP rats exhibited significantly lower [Ca2+]i at 1-h but not at 24-h. Interestingly, treatment with ANA-12, a TrkB-BDNF receptor antagonist, in DFP rats blunted ketamine's antidepressant-like effect at 24-h but not at 1-h. These experiments suggest that in a rat model of DFP-induced depression, inhibition of the NMDAR-Ca2+ contributes to the rapid-onset antidepressant effects of ketamine while the antidepressant actions that persisted at 24-h post ketamine administration involve upregulation of BDNF signaling.

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