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S-ketamine Alleviates Neuroinflammation and Attenuates Lipopolysaccharide-Induced Depression Via Targeting SIRT2.

Cong Lin, Xiaoxuan Zhou, Mingqi Li, Cong Zhang, Haojiang Zhai, Haohong Li, Hongshuang Wang, Xiaohui Wang

Advanced science (Weinheim, Baden-Wurttemberg, Germany) April 2, 2025 DOI: 10.1002/advs.202416481 (opens in new tab)

Study at a glance

AI-extracted from the abstract
Characteristics Animal study with in vitro and in vivo experiments Peer reviewed
Population Lipopolysaccharide (LPS)-induced mouse model
Interventions S-ketamine R-ketamine
Topics Depression Esketamine Ketamine
Keywords R‐ketamine S‐ketamine Depression/mental health/mood disorders Ketamine/s-ketamine/esketamine/r-ketamine Neuroinflammation/brain inflammation/neuroimmunology Molecular biology/sirt2/protein sign
Citations 14
Key findings S-ketamine, but not R-ketamine, alleviated depressive-like behaviors and reduced neuroinflammation in mice by binding to SIRT2 and suppressing pro-inflammatory gene expression.

Abstract

Depression, a pervasive mental health condition, has increasingly been linked to neuroinflammation, as evidenced by elevated levels of pro-inflammatory markers such as TNF-α and IL-1β observed in patients, which underscores the role of inflammation in its pathophysiology. This study investigates the differential effects of S-ketamine (S-KET) and R-ketamine (R-KET) on inflammation-induced depression using a lipopolysaccharide (LPS)-induced mouse model. Results showed that S-KET, but not R-KET, significantly alleviated depressive-like behaviors and reduced levels of pro-inflammatory factors in the medial prefrontal cortex (mPFC). Activity-based protein profiling identified SIRT2 as a key intracellular target of S-KET, with direct binding observed at the Q167 residue, whereas R-KET showed no such binding. S-KET enhanced SIRT2 interaction with NF-κB subunit p65, reducing its acetylation and suppressing pro-inflammatory gene expression, effects not seen with R-KET. In vitro studies with RNA interference and the SIRT2 inhibitor AK-7, along with in vivo pharmacological blockade, confirmed that SIRT2 is crucial for the anti-inflammatory and antidepressant actions of S-KET. These findings suggest that SIRT2 mediates the therapeutic effects of S-KET, highlighting its potential as a target for treating inflammation-associated depression. This study provides novel insights into the stereospecific actions of ketamine enantiomers and the promise of targeting SIRT2 for neuroinflammatory depression.

Comparable studies

Other preclinical and animal studies on esketamine for depression, most cited first.

Study Year Design Participants
Low-dose S-ketamine exerts antidepressant-like effects via enhanced hippocampal synaptic plasticity in postpartum depression rats. Rat model of postpartum depression induced by reproductive hormone withdrawal 2022 Animal study
Antidepressant effects of esketamine via the BDNF/AKT/mTOR pathway in mice with postpartum depression and their offspring. Mice with postpartum depression and their offspring 2024 Animal study
Electroconvulsive therapy combined with esketamine improved depression through PI3K/AKT/GLT-1 pathway. Human patients with severe depression and a rat model of depression 2025 Randomized controlled trial and animal study n = 12
Esketamine alleviates LPS-induced depression-like behavior by activating Nrf2-mediated anti-inflammatory response in adolescent mice. Adolescent male C57BL/6J mice 2025 Preclinical experimental study
S-ketamine alleviates depression-like behavior and hippocampal neuroplasticity in the offspring of mice that experience prenatal stress. Male offspring of pregnant rats subjected to chronic unpredictable mild stress 2024 Animal study

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