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September 10, 2025Pharmacological Research13 citationsOpen Access

All Roads Lead to Glutamate: NMDA and AMPA Receptors as Targets for Rapid-Acting Antidepressants

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FFFlorian FreudenbergCRChristine Reif-LeonhardGDGerard R. Dawson

Key Points

  • Treatment-resistant depression affects about 30% of major depressive disorder patients, necessitating effective treatments.
  • Established rapid-acting antidepressants include (es)ketamine and AXS-05, showing significant potential in treatment.
  • The discussion covers new therapeutic strategies using AMPA receptor modulators to enhance glutamatergic signaling.
  • Targeting glutamatergic agents may transform treatment approaches for depression, offering high efficacy and novel mechanisms.

Abstract

Treatment-resistant depression (TRD) represents a major clinical challenge. Affecting about 30 % of major depressive disorder (MDD) patients, effective treatments for TRD are urgently needed. While depression research and antidepressant (AD) development have long centred on monoaminergic targets, research over the past 35 years has increasingly explored glutamatergic mechanisms. Here we present an extended discussion on developments in glutamatergic drug discovery, focusing on mechanistic convergence between NMDA and AMPA receptor signalling. Beyond established rapid-acting antidepressants (RAADs), such as (es)ketamine and dextromethorphan/bupropion (AXS-05), we highlight novel therapeutic directions involving esmethadone (REL-1017), nitrous oxide, and positive allosteric modulators (PAMs) of NMDA receptors (e.g. rapastinel, zelquistinel, and apimostinel). Moreover, we discuss forward-looking strategies using AMPA receptor PAMs (e.g. osavampator and tulrampator) and targeting of AMPA receptor-interacting proteins. By integrating recent clinical evidence with molecular and physiological findings, we highlight a convergent mechanism across these compounds. This involves increased AMPA receptor activation, triggering BDNF release and mTOR signalling, promoting synaptic strengthening through enhanced AMPA receptor trafficking and dendritic spine formation. Together, targeting glutamatergic signalling represents a transformative path for TRD treatment with high efficacy by more directly modulating pathologically affected signalling modules. These developments place glutamatergic agents at the forefront of next-generation AD strategies.

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Cite This Study

Freudenberg et al. (2025) studied this question.

synapsesocial.com/papers/68c1cc3754b1d3bfb60f47f8https://doi.org/10.1016/j.phrs.2025.107918
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1Medication Augmentation after the Failure of SSRIs for Depression2006 · 1,015 citations
  2. 2Advancing past ketamine: emerging glutamatergic compounds for the treatment of depression2024 · 10 citations
  3. 3Experience with a new rapid-acting antidepressant: amoxapine.1982 · 2 citations
  4. 4Rapastinel, a novel glutamatergic agent with ketamine-like antidepressant actions: Convergent mechanisms2019 · 48 citations
  5. 5Antidepressant-relevant concentrations of the ketamine metabolite (2 R ,6 R )-hydroxynorketamine do not block NMDA receptor function2019 · 161 citations