ArticleCNS neuroscience & therapeutics2025
Astaxanthin Inhibits Ferroptosis of Hippocampal Neurons in Kainic Acid-Induced Epileptic Mice by Activating the Nrf2/GPX4 Signaling Pathway.
Article in CNS neuroscience & therapeutics, 2025. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Cited by 9 papers.
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Who cites it
9 citing papers in PubMed.
- In Vivo Longitudinal Mapping of Brain Iron Accumulation After Pilocarpine-Induced Status Epilepticus.Molecular neurobiology · 2026Article
- Akkermansia muciniphila affects colitis by inhibiting ferroptosis signaling pathway.Scientific reports · 2026Article
- The possible role of astaxanthin in cisplatin-induced nephrotoxicity in rats: interplay between non-coding RNA, redox state, inflammation, and ferroptosis: a histological, immunohistochemical, and biochemical study.Journal of molecular histology · 2026Article
- CPEB1 drives ferroptosis-neuroinflammation crosstalk in temporal lobe epilepsy via the SIRT1-NRF2 acetylation axis.Frontiers in immunology · 2026Article
- The critical role of ferroptosis in virus-associated hematologic malignancies and its potential value in antiviral-antitumor therapy.Virulence · 2025Review
- Chrysin Improves Cognitive Dysfunction in Rats with Intracerebral Hemorrhage by Regulating the Nrf2/GPX4 Pathway to Inhibit Ferroptosis.Molecular neurobiology · 2025Article
- FGF10 ameliorates epileptic seizures and related cognitive dysfunction via the FGFR2/CALB1 signaling pathway.Journal of translational medicine · 2025Article
- JC124 confers multimodal neuroprotection in epilepsy by suppressing NLRP3 inflammasome activation: evidence from animal and human neuronal models.Cell communication and signaling : CCS · 2025Article
- Strong protection by bazedoxifene against chemically-induced ferroptotic neuronal death in vitro and in vivo.Cell communication and signaling : CCS · 2025Article
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6 authors.
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Abstract
backgroundEpilepsy, a prevalent neurological disorder, is distinguished by episodic abnormal discharges of neurons within the brain, resulting in transient brain dysfunction. Prior research has identified a novel form of cell death termed ferroptosis, which is intricately linked to the initiation and progression of epilepsy. It has been demonstrated that astaxanthin (AST) can inhibit ferroptosis by enhancing the activity of nuclear factor erythroid 2-related factor 2 (Nrf2), thereby providing cytoprotection. Therefore, this study aims to investigate whether AST can alleviate neuronal ferroptosis in epilepsy by activating the Nrf2/GPX4 pathway, thereby exerting a neuroprotective effect.
methodsBy constructing a kainic acid (KA)-induced epilepsy mouse model and a KA-induced HT22 cell model, we employed behavioral testing, Western blot analysis, quantitative real-time reverse transcription qRT-PCR, ferroptosis-related assay kits, immunofluorescence staining, and other methods. These methodologies were utilized to investigate the protective effects and underlying mechanisms of AST on ferroptosis in KA-induced epileptic mice and HT22 neurons.
resultsOur results demonstrate that AST pretreatment alleviates KA-induced epileptic behaviors and cognitive impairments in mice and mitigates ferroptosis indicators such as lipid peroxidation and mitochondrial morphological alterations. This neuroprotective effect appears to be mediated by the activation of the Nrf2/GPX4 signaling axis. In vitro studies further revealed that AST confers neuroprotection against KA-induced HT22 neuronal cell death, an effect that is abrogated by an Nrf2 inhibitor. Hence, the neuroprotective properties of AST are significantly associated with the modulation of the Nrf2-mediated ferroptosis pathway, as corroborated by bioinformatics analyses.
conclusionThe AST effectively inhibits neuronal ferroptosis in both in vivo and in vitro epilepsy models via the Nrf2/GPX4 pathway. This finding suggests that AST holds promise as a potential therapeutic agent for the treatment of epilepsy.
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