Effects of escitalopram on synaptic density in the healthy human brain: a randomized controlled trial

Annette Johansen, Sophia Armand, Pontus Plavén-Sigray, Arafat Nasser, Brice Ozenne, Ida N Petersen, Sune H Keller, Jacob Madsen, Vincent Beliveau, Kirsten Møller, Alexandra Vassilieva, Christelle Langley, Claus Svarer, Dea S Stenbæk, Barbara J Sahakian, Gitte M Knudsen*

*Corresponding author for this work
15 Citations (Scopus)

Abstract

Selective serotonin reuptake inhibitors (SSRIs) are widely used for treating neuropsychiatric disorders. However, the exact mechanism of action and why effects can take several weeks to manifest is not clear. The hypothesis of neuroplasticity is supported by preclinical studies, but the evidence in humans is limited. Here, we investigate the effects of the SSRI escitalopram on presynaptic density as a proxy for synaptic plasticity. In a double-blind placebo-controlled study (NCT04239339), 32 healthy participants with no history of psychiatric or cognitive disorders were randomized to receive daily oral dosing of either 20 mg escitalopram (n = 17) or a placebo (n = 15). After an intervention period of 3-5 weeks, participants underwent a [11C]UCB-J PET scan (29 with full arterial input function) to quantify synaptic vesicle glycoprotein 2A (SV2A) density in the hippocampus and the neocortex. Whereas we find no statistically significant group difference in SV2A binding after an average of 29 (range: 24-38) days of intervention, our secondary analyses show a time-dependent effect of escitalopram on cerebral SV2A binding with positive associations between [11C]UCB-J binding and duration of escitalopram intervention. Our findings suggest that brain synaptic plasticity evolves over 3-5 weeks in healthy humans following daily intake of escitalopram. This is the first in vivo evidence to support the hypothesis of neuroplasticity as a mechanism of action for SSRIs in humans and it offers a plausible biological explanation for the delayed treatment response commonly observed in patients treated with SSRIs. While replication is warranted, these results have important implications for the design of future clinical studies investigating the neurobiological effects of SSRIs.

Original languageEnglish
JournalMolecular Psychiatry
Volume28
Issue number10
Pages (from-to)4272-4279
Number of pages8
ISSN1359-4184
DOIs
Publication statusPublished - Oct 2023

Keywords

  • Brain
  • Citalopram/pharmacology
  • Cognitive Dysfunction/drug therapy
  • Escitalopram
  • Humans
  • Selective Serotonin Reuptake Inhibitors/pharmacology
  • Synapses

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