ArticleCell death discovery2025
Inhibition of ferroptosis in inflammatory macrophages alleviates intestinal injury in neonatal necrotizing enterocolitis.
Article in Cell death discovery, 2025. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Cited by 9 papers.
What it found
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The trial behind it
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Who cites it
9 citing papers in PubMed.
- Targeting FAR1 to inhibit intestinal macrophage ferroptosis: repurposing irinotecan as a novel sepsis therapy.Apoptosis : an international journal on programmed cell death · 2026Article
- Identification of diagnostic biomarkers for neonatal necrotizing enterocolitis via machine learning screening and single-cell virtual gene knockout validation.Journal of cell communication and signaling · 2026Article
- Monocyte-Derived Macrophage Ferroptosis Amplifies Cholangitis in Primary Biliary Cholangitis via a Calpain/ACSL4 Axis.Biomedicines · 2026Article
- Regulation of sepsis-associated acute kidney injury by ELAVL1 through USP14/NCOA4-mediated ferroptosis in renal tubular epithelial cells.Molecular and cellular biochemistry · 2026Article
- Dimercaprol Reprograms Intestinal Redox Homeostasis and Organelle Crosstalk to Combat Iron-Induced Gut Dysbiosis Through NRF2/HO-1 Signaling.Antioxidants (Basel, Switzerland) · 2026Article
- Immune Aging as a Failure of Programmed Cell Death Coordination.International journal of molecular sciences · 2026Review
- Ferroptosis in necrotizing enterocolitis: iron overload-driven intestinal injury and mechanistic insights.Frontiers in pediatrics · 2026Review
- Gut-lung immunometabolic crosstalk in sepsis: from microbiota to respiratory failure.Frontiers in medicine · 2025Review
- [Research progress on the pathological mechanisms and clinical translation of ferroptosis in necrotizing enterocolitis].Zhongguo dang dai er ke za zhi = Chinese journal of contemporary pediatricsReview
Corrections and comments
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Authors and funding
3 authors.
Funding
Abstract
Neonatal necrotizing enterocolitis (NEC) is a severe gut disease primarily affecting preterm infants, driven significantly by inflammatory macrophages. This study combined bioinformatics (single-cell/tissue RNA sequencing) and experiments to identify key macrophage changes in NEC. Analysis revealed substantial macrophage infiltration in NEC tissues. These macrophages were highly inflammatory and strongly linked to cell death pathways (ferroptosis, pyroptosis, apoptosis), with scores significantly higher than controls and correlating with inflammation. In vitro, LPS-stimulated inflammatory macrophages showed elevated ferroptosis, evidenced by cell rupture, death, increased ACSL4, decreased GPX4, iron overload, lipid peroxidation, and heightened cytokine release. Critically, the ferroptosis inhibitor Ferrostatin-1 (Fer-1) reversed these effects. While LPS alone didn't kill intestinal epithelial cells, supernatant from LPS-stimulated macrophages significantly increased intestinal epithelial cell death. Fer-1 inhibition of macrophage ferroptosis prevented this epithelial damage. In vivo, a mouse NEC model (induced by hypersomolar feeding, hypoxia, cold) displayed macrophage infiltration, inflammation, and elevated ferroptosis markers. Intraperitoneal Fer-1 administration improved intestinal injury in NEC mice. This study demonstrates that macrophage ferroptosis is a critical driver of NEC inflammation and tissue damage. Inhibiting ferroptosis with Fer-1 effectively reduces both macrophage death and subsequent intestinal epithelial injury, mitigating NEC progression. These findings highlight macrophage ferroptosis as a key therapeutic target for NEC, offering a foundation for new treatment strategies.
Identifiers
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Registered trials
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