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Figure 7: Inhibitory agents targeting ferroptosis-induced oxidative stress. Ferroptosis is...

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paper figure Created: 2026-04-27T05:03:56 By: paper_figures_pipeline Quality: 50% 🔗 External ID: paper-fig-dabb5fb4-3d6c-460d-af8c-b4e1f8
Figure 7: Inhibitory agents targeting ferroptosis-induced oxidative stress. Ferroptosis is...
Figure 7Figure 7
Inhibitory agents targeting ferroptosis-induced oxidative stress. Ferroptosis is closely associated with ROS levels; thus, maintaining redox homeostasis is critical for its regulation. The Xc − –GSH–GPX4 axis functions as a primary ROS-scavenging pathway, and various compounds have been designed to modulate ferroptosis by targeting key components of this axis. More recently, the FSP1–CoQ10–NAD(P)H pathway and the mitochondrial DHODH-mediated pathway have emerged as additional regulatory targets of ferroptosis. NRF2 also plays a central role by activating the transcription of genes involved in antioxidant responses, thus serving as a redox-sensitive regulator. Accordingly, targeting the KEAP1–NRF2 axis represents a promising strategy for ferroptosis modulation. Molecules listed in the pink and green boxes act to inhibit or induce the respective redox-regulatory pathways, thereby suppressing or triggering ferroptosis. CBS, cystathionine β-synthase; CoQ10, coenzyme Q10; CTH, cystathionine
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Metadata
doi10.3389/fimmu.2025.1683876
pmcidPMC12714665
_origin{'url': 'https://www.ebi.ac.uk/europepmc/articles/PMC12714665/bin/fimmu-16-1683876-g007.jpg', 'type': 'external', 'tracked_at': '2026-04-27T12:03:56.585274'}
captionInhibitory agents targeting ferroptosis-induced oxidative stress. Ferroptosis is closely associated with ROS levels; thus, maintaining redox homeostasis is critical for its regulation. The Xc − –GSH–G
paper_iddabb5fb4-3d6c-460d-af8c-b4e1f8896611
image_urlhttps://www.ebi.ac.uk/europepmc/articles/PMC12714665/bin/fimmu-16-1683876-g007.jpg
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description
figure_labelFigure 7
figure_number7
_schema_version1
source_strategypmc_api
entities_mentioned
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