Related Experiment Video
Updated: Aug 7, 2025

Lipidomics and Transcriptomics in Neurological Diseases
Published on: March 18, 2022
Lipoxin A4 methyl ester attenuated ketamine-induced neurotoxicity in SH-SY5Y cells via regulating leptin pathway
Rui Zhang1, Xueji Wang2, Ziyu Xie3
1Department of Anesthesiology, The Second Hospital of Hebei Medical University, No 215 Heping west road, Shijiazhuang, Hebei, China; Qilu Hospital of Shandong University Dezhou Hospital (Dezhou People's Hospital), No. 1166, Dongfanghong West Road, Decheng District, Dezhou City, Shandong Province, China.
Abstract:
Ketamine, the widely used intravenous anesthetic, has been reported to cause neurotoxicity and disturbs normal neurogenesis. However, the efficacy of current treatment strategies targeting ketamine's neurotoxicity remains limited. Lipoxin A4 methyl ester (LXA4 ME) is relatively stable lipoxin analog, which serves an important role in protecting against early brain injury. The purpose of this study was to investigate the protective effect of LXA4 ME on ketamine-caused cytotoxicity in SH-SY5Y cells, as well as the underlying mechanisms. Cell viability, apoptosis and endoplasmic reticulum stress (ER stress) were detected by adopting experimental techniques including CCK-8 assay, flow cytometry, western blotting and transmission electron microscope. Furthermore, examining the expression of leptin and its receptor (LepRb), we also measured the levels of activation of the leptin signaling pathway. Our results showed that LXA4 ME intervention promoted the cell viability, inhibited cell apoptosis, and reduced the expression of ER stress related protein and morphological changes induced by ketamine. In addition, inhibition of leptin signaling pathway caused by ketamine could be reversed by LXA4 ME. However, as the specific inhibitor of leptin pathway, leptin antagonist triple mutant human recombinant (leptin tA) attenuated the cytoprotective effect of LXA4 ME against ketamine-induced neurotoxicity. In conclusion, our findings demonstrated LXA4 ME could exert a neuroprotective effect on ketamine-induced neuronal injury via activation of the leptin signaling pathway.
Insights
Lipoxin A4 methyl ester (LXA4 ME) protects against ketamine neurotoxicity by activating the leptin signaling pathway. This study shows LXA4 ME promotes neuronal viability and reduces apoptosis, offering a potential therapeutic strategy.
Area of Science:
- Neuroscience
- Pharmacology
- Cell Biology
Background:
- Ketamine, a common anesthetic, can cause neurotoxicity and disrupt neurogenesis.
- Current treatments for ketamine-induced neurotoxicity have limited efficacy.
- Lipoxin A4 methyl ester (LXA4 ME), a stable lipoxin analog, shows promise in protecting against brain injury.
Purpose of the Study:
- To investigate the protective effects of LXA4 ME against ketamine-induced cytotoxicity in SH-SY5Y cells.
- To elucidate the underlying mechanisms, focusing on endoplasmic reticulum (ER) stress and the leptin signaling pathway.
Main Methods:
- Cell viability was assessed using the CCK-8 assay.
- Apoptosis was measured by flow cytometry.
- ER stress markers, leptin, leptin receptor (LepRb), and leptin pathway activation were analyzed via western blotting and transmission electron microscopy.
Main Results:
- LXA4 ME significantly improved cell viability and reduced ketamine-induced apoptosis.
- LXA4 ME decreased ER stress markers and reversed ketamine-induced morphological damage.
- LXA4 ME reactivated the leptin signaling pathway inhibited by ketamine, and its protective effect was diminished by a leptin antagonist.
Conclusions:
- LXA4 ME demonstrates neuroprotective effects against ketamine-induced neuronal injury.
- The mechanism involves the activation of the leptin signaling pathway.
- LXA4 ME represents a potential therapeutic agent for ketamine neurotoxicity.

