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Repair and Regeneration: Ferroptosis in the Process of Remodeling and Fibrosis in Impaired Organs

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Date 2024 Oct 2
PMID 39358326
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Abstract

As common clinical-pathological processes, wound healing and tissue remodelling following injury or stimulation are essential topics in medical research. Promoting the effective healing of prolonged wounds, improving tissue repair and regeneration, and preventing fibrosis are important and challenging issues in clinical practice. Ferroptosis, which is characterized by iron overload and lipid peroxidation, is a nontraditional form of regulated cell death. Emerging evidence indicates that dysregulated metabolic pathways and impaired iron homeostasis play important roles in various healing and regeneration processes via ferroptosis. Thus, we review the intrinsic mechanisms of tissue repair and remodeling via ferroptosis in different organs and systems under various conditions, including the inflammatory response in skin wounds, remodeling of joints and cartilage, and fibrosis in multiple organs. Additionally, we summarize the common underlying mechanisms, key molecules, and targeted drugs for ferroptosis in repair and regeneration. Finally, we discuss the potential of therapeutic agents, small molecules, and novel materials emerging for targeting ferroptosis to promote wound healing and tissue repair and attenuate fibrosis.

Citing Articles

Identification and validation of five ferroptosis-related molecular signatures in keloids based on multiple transcriptome data analysis.

Sun Z, Qin Y, Zhang X Front Mol Biosci. 2025; 11():1490745.

PMID: 39834787 PMC: 11743277. DOI: 10.3389/fmolb.2024.1490745.

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