Skip to content

Esketamine reduces postoperative depression in breast cancer through TREK-1 channel inhibition and neurotransmitter modulation.

Jiachi Xu, Mingcan Li, Yu Hu, Qin Yang, Qiang Long, Hui Zhou

Cancer cell international February 18, 2025 DOI: 10.1186/s12935-025-03664-7 (opens in new tab)

Study at a glance

AI-extracted from the abstract
Characteristics Controlled trial with experimental and control groups, plus in vitro and transcriptomic analyses Peer reviewed
Sample size 54
Population Female breast cancer patients who underwent surgery
Intervention Esketamine
Topics Esketamine Depression
Keywords Breast cancer Hippocampal neurons Postoperative depression Trek-1 channels #postoperativecare post-surgery care Post-op care Surgical recovery #breastcancer mammary carcinoma Breast carcinoma Breast neoplasm #esketamine ket
Citations 6
Key findings Esketamine alleviates postoperative depression in breast cancer patients by inhibiting TREK-1 channels and promoting hippocampal neuron activity.

Abstract

Postoperative depression significantly affects the quality of life of breast cancer patients. This study explores the potential therapeutic effects of esketamine on postoperative depression through modulation of the TREK-1 two-pore domain potassium channel. We analyzed data from 54 female breast cancer patients who underwent surgery at our hospital between 2019 and 2023, dividing them into experimental and control groups based on esketamine treatment. Transcriptomic sequencing of hippocampal neurons from rats identified potassium ion-related pathways and key regulatory genes, including TREK-1, influenced by esketamine. In vitro studies showed that esketamine primarily alleviates depressive symptoms by inhibiting TREK-1 protein expression, enhancing GABA neurotransmitter release, and improving neuronal activity, while overexpression of TREK-1 reversed these effects. Esketamine's inhibition of TREK-1 channels and promotion of hippocampal neuron activity effectively alleviate postoperative depression in breast cancer patients, suggesting a novel therapeutic strategy.

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

Explore topics

By condition and practice