Modafinil improves methamphetamine-induced object recognition deficits and restores prefrontal cortex ERK signaling

Betina González1, Mariana Raineri1, Jean Lud Cadet2

  • 1Instituto de Investigaciones Farmacológicas (Universidad de Buenos Aires - Consejo Nacional de Investigaciones Científicas y Técnicas), Ciudad Autónoma de Buenos Aires, Junín 956, Piso 5, C1113 Buenos Aires, Argentina.

Neuropharmacology
|February 18, 2014
PubMed

Insights

High-dose modafinil improved visual memory deficits in mice caused by methamphetamine (METH) exposure. This cognitive improvement was linked to the restoration of ERK signaling in the medial prefrontal cortex (mPFC).

Area of Science:

  • Neuroscience
  • Pharmacology
  • Cognitive Science

Background:

  • Chronic methamphetamine (METH) use causes persistent cognitive dysfunction.
  • Modafinil, a wakefulness-promoting agent, is used off-label for METH dependence.
  • The potential of modafinil to ameliorate METH-induced cognitive deficits requires further investigation.

Purpose of the Study:

  • To determine if modafinil can improve visual memory deficits induced by sub-chronic METH treatment in mice.
  • To investigate the underlying neurobiological mechanisms, specifically extracellular signal-regulated kinase (ERK) phosphorylation in key brain regions.

Main Methods:

  • Sub-chronic METH treatment (1 mg/kg/day for 7 days) in mice.
  • Novel Object Recognition (NOR) task to assess visual memory retention.
  • Administration of modafinil (30 or 90 mg/kg) before the NOR training session.
  • Measurement of ERK phosphorylation in the medial prefrontal cortex (mPFC), hippocampus, and nucleus accumbens (NAc).

Main Results:

  • METH-treated mice exhibited significant impairments in visual memory retention during the NOR task.
  • A high dose of modafinil (90 mg/kg) significantly restored visual memory retention in METH-treated mice to control levels.
  • METH treatment reduced novelty-induced ERK phosphorylation in the mPFC, which was restored by the high dose of modafinil.

Conclusions:

  • Modafinil demonstrates a palliative effect against METH-induced visual cognitive impairments.
  • The cognitive benefits of modafinil may be mediated by the normalization of ERK signaling pathways in the mPFC.
  • Modafinil holds potential as a therapeutic agent for cognitive deficits associated with METH abuse and other neuropsychiatric conditions.