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Functional activity and connectivity signatures of ketamine and lamotrigine during negative emotional processing: a double-blind randomized controlled fMRI study. | LitMetric

AI Article Synopsis

  • - Ketamine is shown to be an effective antidepressant that influences brain circuits by targeting the glutamatergic system, particularly affecting negative emotional processing.
  • - A study involving 75 healthy participants examined the effects of ketamine alone and in combination with lamotrigine, which inhibits glutamate release, revealing that lamotrigine can block ketamine's impact on brain connectivity.
  • - Results indicated that while ketamine immediately altered brain activity and connectivity, particularly in the Default Mode Network, lamotrigine prevented some of these changes, suggesting the importance of glutamatergic transmission in the antidepressant effects of ketamine.

Article Abstract

Ketamine is a highly effective antidepressant (AD) that targets the glutamatergic system and exerts profound effects on brain circuits during negative emotional processing. Interestingly, the effects of ketamine on brain measures are sensitive to modulation by pretreatment with lamotrigine, which inhibits glutamate release. Examining the antagonistic effects of ketamine and lamotrigine on glutamate transmission holds promise to identify effects of ketamine that are mediated through changes in the glutamatergic system. Investigating this modulation in relation to both the acute and sustained effects of ketamine on functional activity and connectivity during negative emotional processing should therefore provide novel insights. 75 healthy subjects were investigated in a double-blind, single-dose, randomized, placebo-controlled, parallel-group study with three treatment conditions (ketamine, lamotrigine pre-treatment, placebo). Participants completed an emotional face viewing task during ketamine infusion and 24 h later. Acute ketamine administration decreased hippocampal and Default Mode Network (DMN) activity and increased fronto-limbic coupling during negative emotional processing. Furthermore, while lamotrigine abolished the ketamine-induced increase in functional connectivity, it had no acute effect on activity. Sustained (24 h later) effects of ketamine were only found for functional activity, with a significant reduction in the posterior DMN. This effect was blocked by pretreatment with lamotrigine. Our results suggest that both the acute increases in fronto-limbic coupling and the delayed decrease in posterior DMN activity, but not the attenuated limbic and DMN recruitment after ketamine, are mediated by altered glutamatergic transmission.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC11479267PMC
http://dx.doi.org/10.1038/s41398-024-03120-6DOI Listing

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