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Esketamine alleviates COPD-depression comorbidity in rats via MAPK/NF-κB inhibition and gut-lung-brain axis modulation.

Ang Liu, Xiao-Qi Zhang, Jia-Xin Guo, Qiu-Yan Wen, Kun Dai, Wan-Jing Zheng, Jian-Hua Wu, Chui-Yu Li, Zhi-Yuan Chen

Journal of Neuroinflammation January 22, 2026 DOI: 10.1186/s12974-026-03699-1 (opens in new tab)

Study at a glance

AI-extracted from the abstract
Characteristics Animal experimental study (rat model) with complementary in vitro cell studies Peer reviewed
Population Rats with cigarette-smoke- and stress-induced COPD-depression comorbidity; NR8383 alveolar macrophages and HAPI microglia in vitro
Interventions Esketamine Diprovocim
Duration 14 days of treatment
Topics Depression Esketamine
Keywords Animals Rats, sprague-dawley Nf-kappa b Comorbidity Signal transduction Male Gastrointestinal microbiome Brain-gut axis Mapk/nf-κb signaling pathway Gut-lung-brain axis
Key findings Esketamine improved pulmonary function and depression-like behavior in a rat model of COPD-depression comorbidity and suppressed MAPK/NF-kB signaling, inflammation, and oxidative stress; these effects were partly reversed by the TLR1/2 agonist Diprovocim. Esketamine also partially restored gut and lung microbial balance. The authors propose a gut-lung-brain inflammatory-microbial network underlying this comorbidity.

Abstract

Background: Chronic obstructive pulmonary disease (COPD) and depression frequently co-occur, yet the biological basis of this comorbidity and effective therapeutic strategies remain poorly defined.

Methods: We established a rat model of COPD-depression comorbidity through sequential cigarette-smoke exposure and chronic unpredictable mild stress. Pulmonary function, depression-like behaviors, histopathology, and MAPK/NF-κB signaling in lung and hippocampus were assessed. Esketamine or esketamine plus the TLR1/2 agonist Diprovocim was administered for 14 days. Cytokines, oxidative-stress markers, neuronal apoptosis, and microglial activation were evaluated. Complementary in-vitro studies used NR8383 alveolar macrophages (CSE model) and HAPI microglia (LPS + CSE). Gut and lung microbiota were profiled by 16 S rRNA sequencing and correlated with physiological and inflammatory indices.

Results: Comorbid rats displayed airflow limitation, depression-like behaviors, systemic inflammation, oxidative stress, and MAPK/NF-κB activation. Esketamine improved pulmonary function and behavior, reduced neuronal apoptosis and microglial activation, and suppressed MAPK/NF-κB signaling; these effects were partly reversed by Diprovocim. In vitro, esketamine increased macrophage and microglial viability, lowered proinflammatory cytokines and oxidative markers, and inhibited pathway activation. Microbiota profiling showed dysbiosis of gut and lung communities, with loss of beneficial taxa and expansion of conditional pathogens, whereas esketamine partially restored balance by promoting commensals and reducing potential pathogens.

Conclusions: These findings delineate a gut-lung-brain inflammatory-microbial network in COPD-depression comorbidity and identify esketamine as a multi-target intervention capable of modulating signaling pathways, inflammation and oxidative stress, and microbial homeostasis.

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
S-ketamine Alleviates Neuroinflammation and Attenuates Lipopolysaccharide-Induced Depression Via Targeting SIRT2. Lipopolysaccharide (LPS)-induced mouse model 2025 Animal study with in vitro and in vivo experiments
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

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