Skip to content
ferroptosis
EntityQ24466962· pop 11· linked from 47 articles

ferroptosis

Sign in to save

Also known as GO:0097707

Ferroptosis (also known as oxytosis) is a type of programmed cell death dependent on iron and characterized by the accumulation of lipid peroxides. Ferroptosis is biochemically, genetically, and morphologically distinct from other forms of regulated cell death such as apoptosis and necroptosis. Oxytosis/ferroptosis can be initiated by the failure of the glutathione-dependent antioxidant defenses, resulting in unchecked lipid peroxidation and eventual cell death. Lipophilic antioxidants and iron chelators can prevent ferroptotic cell death.

Research

27,942 papers

via PubMed

~18 min read

Encyclopedic overview

20 sections
Contents
  • History
  • Mechanism
  • Biology
  • In development
  • In Adult Stem Cells
  • Therapeutic relevance
  • Aging
  • Cancer
  • Neurodegeneration
  • Acute kidney injury
  • Immunology
  • Systemic lupus erythematosus
  • Inflammatory bowel diseases
  • Biomarkers
  • Small molecule modulators of ferroptosis
  • Inducers
  • Inhibitors
  • See also
  • References
  • External links

Ferroptosis (also known as oxytosis) is a type of programmed cell death dependent on iron and characterized by the accumulation of lipid peroxides. Ferroptosis is biochemically, genetically, and morphologically distinct from other forms of regulated cell death such as apoptosis and necroptosis. Oxytosis/ferroptosis can be initiated by the failure of the glutathione-dependent antioxidant defenses, resulting in unchecked lipid peroxidation and eventual cell death. Lipophilic antioxidants and iron chelators can prevent ferroptotic cell death.

Researchers have identified roles in which oxytosis/ferroptosis can contribute to the medical field, such as the development of cancer therapies. Ferroptosis activation plays a regulatory role on growth of tumor cells in the human body. However, the positive effects of oxytosis/ferroptosis could be potentially neutralized by its disruption of metabolic pathways and disruption of homeostasis in the human body. Since oxytosis/ferroptosis is a form of regulated cell death, some of the molecules that regulate oxytosis/ferroptosis are involved in metabolic pathways that regulate cysteine exploitation, glutathione state, nicotinamide adenine dinucleotide phosphate (NADP) function, lipid peroxidation, and iron homeostasis.

Excerpted from Wikipedia’s “ferroptosis” article, available under the CC BY-SA 4.0 licence.

Gallery (7)