TopicNeuroscience

GluA1

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3Total items
2ePosters
1Seminar

Latest

SeminarNeuroscience

Decoding ketamine: Neurobiological mechanisms underlying its rapid antidepressant efficacy

Zanos Panos
Translational Neuropharmacology Lab, University of Cyprus, Center for Applied Neurosience & Department of Psychology, Nicosia, Cyprus
Apr 4, 2025

Unlike traditional monoamine-based antidepressants that require weeks to exert effects, ketamine alleviates depression within hours, though its clinical use is limited by side effects. While ketamine was initially thought to work primarily through NMDA receptor (NMDAR) inhibition, our research reveals a more complex mechanism. We demonstrate that NMDAR inhibition alone cannot explain ketamine's sustained antidepressant effects, as other NMDAR antagonists like MK-801 lack similar efficacy. Instead, the (2R,6R)-hydroxynorketamine (HNK) metabolite appears critical, exhibiting antidepressant effects without ketamine's side effects. Paradoxically, our findings suggest an inverted U-shaped dose-response relationship where excessive NMDAR inhibition may actually impede antidepressant efficacy, while some level of NMDAR activation is necessary. The antidepressant actions of ketamine and (2R,6R)-HNK require AMPA receptor activation, leading to synaptic potentiation and upregulation of AMPA receptor subunits GluA1 and GluA2. Furthermore, NMDAR subunit GluN2A appears necessary and possibly sufficient for these effects. This research establishes NMDAR-GluN2A activation as a common downstream effector for rapid-acting antidepressants, regardless of their initial targets, offering promising directions for developing next-generation antidepressants with improved efficacy and reduced side effects.

ePosterNeuroscience

Glycine Transporter Inhibitor 1 Rescues Excitatory/Inhibitory Imbalance Mediated by GluA1 AMPA Receptor Ablation from Parvalbumin-Positive Interneurons

Hsing-Jung Chen-Engerer, Stefan Jaeger, Rimma Bondarenko, Rolf Sprengel, Bastian Hengerer, Holger Rosenbrock, Volker Mack, Niklas Schuelert
ePosterNeuroscience

Vasopressin acts as a synapse organizer in limbic regions by boosting PSD95 and GluA1 expression

Vito S. Hernandez, Mario Zetter-Salmon, Teresa Padilla, Lee E. Eiden, Limei Zhang

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