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Beyond NMDA Receptors: A Narrative Review of Ketamine's Rapid and Multifaceted Mechanisms in Depression Treatment.

Zuzanna Antos, Xawery Żukow, Laura Bursztynowicz, Piotr Jakubów

International Journal of Molecular Sciences December 20, 2024 DOI: 10.3390/ijms252413658 (opens in new tab)

Study at a glance

AI-extracted from the abstract
Characteristics Review Peer reviewed
Intervention Ketamine
Topics Depression Ketamine Neuroplasticity Esketamine
Keywords Bdnf Nmda antagonist Mechanism of action Opioid system Triple network dysfunction Depression treatment Brain chemistry Antidepressant mechanisms Neuroscience research
Citations 14
Key findings Ketamine's antidepressant effects involve NMDA receptor antagonism, increased glutamate release, activation of AMPA receptors and BDNF-TrkB/mTOR pathways, and alterations in brain networks, with a possible permissive role of the opioid system.

Abstract

The rising prevalence of depression, with its associated suicide risk, demands effective fast-acting treatments. Ketamine has emerged as promising, demonstrating rapid antidepressant effects. While early studies show swift mood improvements, its precise mechanisms remain unclear. This article aims to compile and synthesize the literature on ketamine's molecular actions. Ketamine primarily works by antagonizing NMDA receptors, reducing GABAergic inhibition, and increasing glutamate release. This enhanced glutamate activates AMPA receptors, triggering crucial downstream cascades, including BDNF-TrkB and mTOR pathways, promoting synaptic proliferation and regeneration. Moreover, neuroimaging studies have demonstrated alterations in brain networks involved in emotional regulation, including the Default Mode Network (DMN), Central Executive Network (CEN), and Salience Network (SN), which are frequently disrupted in depression. Despite the promising findings, the literature reveals significant inaccuracies and gaps in understanding the full scope of ketamine's therapeutic potential. For instance, ketamine engages with opioid receptors, insinuating a permissive role of the opioid system in amplifying ketamine's antidepressant effects, albeit ketamine does not operate as a direct opioid agonist. Further exploration is requisite to comprehensively ascertain its safety profile, long-term efficacy, and the impact of genetic determinants, such as BDNF polymorphisms, on treatment responsiveness.

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