ReviewFrontiers in immunology2025
Beyond oxidative stress: Ferroptosis as a novel orchestrator in neurodegenerative disorders.
Review in Frontiers in immunology, 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.
- Taurochenodeoxycholic acid alleviates MPPIBRO neuroscience reports · 2026Article
- [Mechanisms of Piezo1-mediated microglial ferroptosis in inhibiting spinal cord injury repair].Zhongguo xiu fu chong jian wai ke za zhi = Zhongguo xiufu chongjian waike zazhi = Chinese journal of reparative and reconstructive surgery · 2026Article
- Research on the imbalance of metal homeostasis and ferroptosis mechanisms in neurodegenerative diseases.Global medical genetics · 2026Article
- Deferoxamine mitigates neuronal loss following spinal cord injury via ferroptosis inhibition and Nrf2/HO‑1 pathway activation.International journal of molecular medicine · 2026Article
- Regulated cell death in sepsis: reframing NETosis within the spectrum of apoptosis and inflammatory lytic death.Inflammation research : official journal of the European Histamine Research Society ... [et al.] · 2026Review
- Review
- Impact of Oxidative Stress-Driven Ferroptosis in Neurodegeneration.International journal of molecular sciences · 2026Review
- A Nasal Taxifolin Hydrogel Targets the TLR4/NF-κB/HIF-1α Axis to Suppress Ferroptosis in Alzheimer's Disease.Antioxidants (Basel, Switzerland) · 2026Article
- Association between the newly proposed Chinese dietary inflammatory index and risk of ischemic stroke: a multi-centered case-control study.Frontiers in nutrition · 2026Article
Corrections and comments
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Authors and funding
9 authors.
Funding
No grant is acknowledged in the PubMed record.
Abstract
Neurodegenerative diseases are a group of disorders characterized by progressive loss of neuronal function due to degenerative damage to neural cells. Ferroptosis, a newly identified form of regulated cell death, is pathologically defined by iron-dependent accumulation of lipid peroxides, mitochondrial shrinkage, and increased mitochondrial membrane density. Unlike apoptosis or necrosis, ferroptosis is driven by a combination of factors, including excessive lipid peroxidation, disruption of iron homeostasis, and depletion of antioxidant defenses such as glutathione (GSH) and glutathione peroxidase 4 (GPX4). The ferroptotic process engages multiple biological functions-such as iron metabolism, lipid metabolism, oxidative stress, mevalonate signaling, transsulfuration pathways, heat shock protein activation, glutamate/cystine transport, and GSH biosynthesis. While initial studies focused on its role in cancer, accumulating evidence now links ferroptosis to neurological disorders. Ferroptosis has been implicated in the pathophysiology of stroke, traumatic brain injury, and major neurodegenerative diseases such as Alzheimer's disease (AD), Parkinson's disease (PD), and Huntington's disease (HD). Several small-molecule inhibitors-including ferrostatin-1, liproxstatin-1, and iron chelators such as deferoxamine (DFO)-have demonstrated efficacy in animal models by attenuating neuronal damage and improving behavioral outcomes through the suppression of ferroptosis. In addition, natural compounds have emerged as promising candidates for targeting ferroptosis due to their structural diversity, low toxicity, and multitarget regulatory properties. These agents offer potential leads for developing novel neuroprotective therapeutics. Neurodegenerative diseases remain a significant global health burden, with limited effective treatments available to date. Modulation of ferroptosis presents a new conceptual framework for therapeutic intervention, offering hope for disease-modifying strategies. This review summarizes recent advances in understanding the role of ferroptosis in neurodegenerative disease mechanisms, focusing on its contribution to pathological progression, molecular regulation, and therapeutic interventions. By integrating current findings, we aim to provide theoretical insights into novel pathogenic mechanisms and scientific guidance for the development of targeted therapies that modulate ferroptosis to slow or halt disease progression.
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Read under generation 80e0d062 · epoch 390. Bibliography from PubMed, PubMed Central and OpenAlex; grants from NIH RePORTER; trial links from ClinicalTrials.gov; estimates, votes and beliefs from the Socratic graph.